EP1294878A2 - Mutant presenilin 1 and presenilin 2 polypeptides - Google Patents
Mutant presenilin 1 and presenilin 2 polypeptidesInfo
- Publication number
- EP1294878A2 EP1294878A2 EP01948232A EP01948232A EP1294878A2 EP 1294878 A2 EP1294878 A2 EP 1294878A2 EP 01948232 A EP01948232 A EP 01948232A EP 01948232 A EP01948232 A EP 01948232A EP 1294878 A2 EP1294878 A2 EP 1294878A2
- Authority
- EP
- European Patent Office
- Prior art keywords
- polypeptide
- threonine
- glycine
- group
- residue
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn
Links
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Classifications
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07K—PEPTIDES
- C07K14/00—Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof
- C07K14/435—Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof from animals; from humans
- C07K14/46—Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof from animals; from humans from vertebrates
- C07K14/47—Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof from animals; from humans from vertebrates from mammals
- C07K14/4701—Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof from animals; from humans from vertebrates from mammals not used
- C07K14/4711—Alzheimer's disease; Amyloid plaque core protein
-
- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01K—ANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
- A01K2217/00—Genetically modified animals
- A01K2217/05—Animals comprising random inserted nucleic acids (transgenic)
Definitions
- the present invention provides mutant presenilin 1 and presenilin 2 polypeptides and polynucleotides encoding the polypeptides and methods for their production by recombinant and PCR techniques are disclosed. Methods for utilizing the mutant polypeptides in cell based and in- vitro assays for inhibitors of activity are also disclosed.
- Alzheimer's disease was originally thought to be a rare disorder primarily affecting only people under the age of 65. It is now recognized as the most common form of dementia, and alone is responsible for about 50% of all dementias; an additional 15-20% of dementias have combined Alzheimer's and vascular pathology.
- Alzheimer's disease The prevalence of the Alzheimer's is directly related to age. It can occur in the fourth decade of life but is extraordinarily rare at this age. The prevalence then increases logarithmically with each succeeding decade. Over the age of 85 at least one person in four is afflicted. Because persons over the 85 form the rapidly growing portion of the population Alzheimer's disease represents a major health problem. Zigmond, et al.:. Fundamental Neuroscience, Academic Press, 1999
- Alzheimer's disease is thought to be initiated by the deposition of amyloid plaque in cortex and hippocampus.
- the material deposited in plaque is proteinaceous. It consists primarily of the amyloid ⁇ -peptide (A ⁇ ), a peptide of 39-43 amino acids which is derived from a larger precursor, the amyloid peptide precursor (APP), through the action of specific proteases.
- a ⁇ amyloid ⁇ -peptide
- APP amyloid peptide precursor
- APP amyloid peptide precursor
- a causative role for A ⁇ peptide in Alzheimer's disease is supported by genetic studies of familial, early-onset Alzheimer's disease in which inheritance follows an autosomal dominant mode of transmission, i such patients, genetic forms of Alzheimer's disease have been associated with mutations in the APP gene (Groate et al., 1991; Mullan et al. 1992), and two related genes, presenilin-1 (PS-1; Sherrington et al., 1995) and ⁇ resenilin-2 (PS-2; Levy-Lahad et al., 1995; Rogaev et al., 1995). Mutations in all three genes alter production of the A ⁇ peptide in specific ways.
- PS1 and PS2 mutations subtly increase the production of A ⁇ 1-42 peptide as compared to the A ⁇ 1-40 peptide (e.g., Citron et al., 1997), Mehta et al. (1998), Murayama et al. (1999), Xia et al. (1997).
- a ⁇ 1- 2 is generally recognized as being more toxic to cells than A ⁇ 1-40 .
- Citron M. et al. Mutation of the beta-amyloid precursor protein in familial Alzheimer's disease increases beta-protein production. Nature 360, 372-374 (1992).
- Alzheimer's disease type 3 gene Nature 376: 775-778, 1995.
- SEQ ID NO:l cDNA encoding mutant presenilin-1 (nucleotides 772-777 site directed mutagenesis sites directed by "n's)
- SEQ ID NO:2 cDNA encoding mutant presenilin-1 (nucleotides 1156-1161 site directed mutagenesis sites directed by "n's)
- SEQ ID NO:3 cDNA encoding mutant presenilin-1 (nucleotides 772-777 and 1156-
- SEQ ID NO:4 mutant presenilin-1 (amino acids 258-259 variable amino acids denoted by “x”'s )
- SEQ ID NO:5 mutant presenilin-1 (amino acids 386-387 variable amino acids denoted by "x'”s)
- SEQ ID NO:7 cDNA encoding mutant presenilin-2 (nucleotides 790-795 site directed mutagenesis sites directed by "n's)
- SEQ ID NO:8 cDNA encoding mutant presenilin-2 (nucleotides 1099-1104 site directed mutagenesis sites directed by "n's)
- SEQ ID NO:12 mutant presenilin-2 (amino acids 264-265 and 367-368 variable amino acids denoted by "x'"s)
- Figure 1 Alignment of wild type and mutant presenilin-1 showing positions of site directed mutagenesis sites in bold type
- Figure 3 512088 Drug Treatment and its Effect on A ⁇ 1-40 levels in cell lines expressing APP SW KK alone, APP SW KK and Wild-Type PSl and APP SW KK and PSl wt/DTG
- Figure 4 512088 Drug Treatment and its Effect on A ⁇ 1-42 levels in cell lines expressing APP SW KK alone, APP S KK and Wild-Type PSl and APP SW KK and PSl wt/DTG
- Figure 5 L685,458 Drug Treatment and its Effect on A ⁇ 1-40 levels in cell lines expressing APP SW KK alone, APP SW KK and Wild-Type PSl and APP SW KK and PSl wt/DTG
- Figure 6 L685,458 Drug Treatment and its Effect on A ⁇ -42 levels in cell lines expressing APP S KK alone, APP S KK and Wild-Type PSl and APP S KK and PSl wt/DTG
- Figure 7 MG132 Drag Treatment and its Effect on A ⁇ 1-40 levels in cell lines expressing APP SW KK alone, APP S KK and Wild-Type PSl and APP SW KK and PSl wt/DTG
- Figure 9 Vehicle (DMSO) Treatment and its Effect on A ⁇ 1- 0 levels in cell lines expressing APP SW KK alone, APP SW KK and Wild-Type PSl and APPswKK and PSl wt DTG Figure 10 Vehicle (DMSO) Treatment and its Effect on A ⁇ 1-42 levels in cell lines expressing APP SW KK alone, APP S KK and Wild-Type PSl and APPswKK and PSl wt/DTG
- the present invention addresses the need identified above in that it provides heretofore unknown isolated mutant presenilin 1 and presenilin 2 (or herinafter "mutant PS 1 and PS2) polypeptides and the isolated polynucleotide molecules that encode them, as well as vectors and host cells comprising such polynucleotide molecules.
- the invention provides an isolated polypeptide comprising at least 130 contiguous amino acids of SEQ ID:NO:6 including amino acid residues 258 through 387 of SEQ ID NO:6 wherein residue 258 is selected from the group consisting of leucine, threonine or conservative substitutions of threonine, and/or wherein residue 259 is selected from the group consisting of valine, glycine or conservative substitutions of glycine., and/or wherein residue 386 is selected from the group consisting of phenylalanine, threonine or conservative substitutions of threonine and/or wherein residue 387 is selected from the group consisting of isoleucine, glycine or conservative substitutions of glycine, with the proviso that a polypeptide where amino acid residue 258 is a leucine, amino acid residue 259 is a valine, amino acid residue 386 is a phenylalanine and amino residue 387 is a isoleucine is excluded
- a preferred embodiment of the invention is a polypeptide which is at least 140, at least 150, at least 160, at least 170, at least 180, at least 190, at least 200, at least 210, at least 220, at least 230, at least 240, at least 250, at least 260, at least 270, at least 280, at least 300, at least 310, at least 320, at least 330, at least 340, at least 350, at least 360, at least 370, at least 380, at least 390, at least 400, at least 410, at least 420, at least 430, at least 440, at least 450, at least 460, at least 467 amino acids in length.
- a particularly preferred embodiment of the polypeptide of the invention comprises a polypeptide of 467 amino acids in length.
- the invention further provides, An isolated polypeptide comprising at least
- residue 264 is selected from the group consisting of leucine, threonine or conservative substitutions of threonine
- residue 265 is selected from the group consisting of valine, glycine or conservative substitutions of glycine.
- residue 367 is selected from the group consisting of phenylalanine, threonine or conservative substitutions of threonine
- residue 368 is selected from the group consisting of isoleucine, glycine or conservative substitutions of glycine, with the proviso that a polypeptide where amino acid residue 258 is a leucine, amino acid residue 259 is a valine, amino acid residue 386 is a phenylalanine and amino residue 387 is a isoleucine is excluded
- a preferred embodiment of the invention is a polypeptide which is at least 120, at least 130, at least 140, at least 150, at least 160, at least 170, at least 180, at least 190, at least 200, at least 210, at least 220, at least 230, at least 240, at least 250, at least 260, at least 270, at least 280, at least 300, at least 310, at least 320, at least 330, at least 340, at least 350, at least 360, at least 370, at least 380, at least 390, at least 400, at least 410, at least 420, at least 430, at least 440, at least 448 amino acids in length.
- a particularly preferred embodiment of the polypeptide above comprises a polypeptide of 448 amino acids in length.
- the invention further provides polynucleotides encoding the polypeptides of the invention. Each and every polynucleotide encoding the polypeptides of the invention are intended to be encompassed by the invention.
- the invention provides vectors comprising a polynucleotides of the invention.
- vectors are useful, e.g., for amplifying the polynucleotides in host cells to create useful quantities thereof.
- the vector is an expression vector wherein the polynucleotide of the invention is operatively linked to a polynucleotide comprising an expression control sequence.
- Such vectors are useful for recombinant production of polypeptides of the invention.
- the invention provides host cells that are transformed or transfected (stably or transiently) with polynucleotides of the invention or vectors of the invention.
- host cells are useful for amplifying the polynucleotides and also for expressing the mutant PS 1 and PS2 polypeptides or fragments thereof encoded by the polynucleotide.
- the invention provides a method for producing a mutant PSl or PS 2 polypeptide (or fragment thereof) comprising the steps of growing a host cell of the invention in a nutrient medium and isolating the polypeptide from the cell or the medium.
- methods of identifying agents which modulate A ⁇ derived peptide production are also useful.
- Such methods comprise contacting amyloid precursor protein (APP) and a mutant PSl or PS2 polypeptide in the presence and absence of a test agent; determining the amount of at least one A ⁇ derived peptide produced in the presence and absence of the test agent; and comparing the amount of at least one A ⁇ derived peptide in the presence of the test agent to the amount of at least one A ⁇ derived peptide in the absence of the test agent to identify an agent that modulates A ⁇ derived peptide production wherein differing levels of said A ⁇ derived peptide produced in the presence of a test agent identifies an agent that modulates A ⁇ production
- APP amyloid precursor protein
- the invention provides a method for the identification of an agent capable of altering the ratio of A ⁇ 1-40 / (A ⁇ 1-40 + A ⁇ 2 )produced in any of the cell lines expressing mutant PSl and PS 2 polypeptides comprising the steps of: obtaining a test culture and a control culture of said cell line, contacting said test culture with a test agent, measuring the levels of A ⁇ -40 and A ⁇ ! .
- the invention further provides a transgenic non-human animal containing in germ or somatic cells, any of the nucleic acids described above.
- the encoded polypeptides can be used as a target for the screening of drags useful in the treatment of useful in treating pathologies associated with aberrant APP processing including Alzheimer's disease.
- High-throughput assays for identifying inhibitors of presenilin activity are provided.
- High throughput assays are provided, as are related assay compositions, integrated systems for assay screening and other features that will be evident upon review. Detailed Description of the Invention Definitions
- wild-type refers to a gene or gene product which has the characteristics of that gene or gene product when isolated from a naturally occurring source.
- a wild-type gene is that which is most frequently observed in a population and is thus arbitrarily designed the "normal” or " wild-type” form of the gene.
- modified or mutant refers to a gene or gene product which displays modifications in sequence and or functional properties (i.e., altered characteristics) when compared to the wild-type gene or gene product. It is noted that naturally-occurring mutants can be isolated; these are identified by the fact that they have altered characteristics when compared to the wild-type gene or gene product.
- allelic variants are modified forms of a wild type gene sequence, the modification resulting from recombination during chromosomal segregation or exposure to conditions which give rise to genetic mutation. Allelic variants, like wild type genes, are naturally occurring sequences (as opposed to non-naturally occurring variants which arise from in vitro manipulation).
- isolated as used herein and as understood in the art, whether referring to “isolated” polynucleotides or polypeptides, is taken to mean that it is uniquely created by the inventors, separated from the original cellular or genetic environment in which the polypeptide or nucleic acid is normally found.
- a transgenic animal or a recombinant cell line constructed with a polynucleotide of the invention incorporates the "isolated" nucleic acid.
- polynucleotide generally refers to any polyribonucleotide or polydeoxribonucleotide, which may be unmodified RNA or DNA or modified RNA or DNA.
- Polynucleotides include, without limitation, single- and double- stranded DNA, DNA that is a mixture of single- and double-stranded regions, single- and double-stranded RNA, and RNA that is mixture of single- and double-stranded regions, hybrid molecules comprising DNA and RNA that may be single-stranded or, more typically, double-stranded or a mixture of single- and double-stranded regions.
- polynucleotide refers to triple-stranded regions comprising RNA or DNA or both RNA and DNA.
- the term “polynucleotide” also includes DNAs or RNAs containing one or more modified bases and DNAs or RNAs with backbones modified for stability or for other reasons.
- Modified bases include, for example, tritylated bases and unusual bases such as inosine.
- polynucleotide embraces chemically, enzymatically or metabolically modified forms of polynucleotides as typically found in nature, aswell as the chemical forms of DNA and RNA characteristic of viruses and cells.
- Polynucleotide also embraces relatively short polynucleotides, often referred to as oligonucleotides.
- polypeptide refers to any peptide or protein comprising two or more amino acids joined to each other by peptide bonds or modified peptide bonds, i.e., peptide isosteres.
- Polypeptide refers to both short chains, commonly referred to as peptides, oligopeptides or oligomers, and to longer chains, generally referred to as proteins. Polypeptides may contain amino acids other than the 20 gene- encoded amino acids.
- Polypeptides include amino acid sequences modified either by natural processes, such as post-translational processing, or by chemical modification techniques which are well known in the art. Such modifications are well described in basic texts and in more detailed monographs, as well as in a voluminous research literature.
- Modifications may occur anywhere in a polypeptide, including the peptide backbone, the amino acid side-chains and the amino or carboxyl termini. It will be appreciated that the same type of modification may be present to the same or varying degrees at several sites in a given polypeptide. Also, a given polypeptide may contain many types of modifications. Polypeptides may be branched as a result of ubiquitination, and they may be cyclic, with or without branching. Cyclic, branched and branched cyclic polypeptides may result from post-translation natural processes or may be made by synthetic methods.
- Modifications include acetylation, acylation, ADP-ribosylation, amidation, covalent attachment of flavin, covalent attachment of a heme moiety, covalent attachment of a nucleotide or nucleotide derivative, covalent attachment of a lipid or lipid derivative, covalent attachment of phosphotidylinositol, cross-linking, cyclization, disulfide bond formation, demethylation, formation of covalent cross-links, formation of cystine, formation of pyroglutamate, formylation, gamma-carboxylation, glycosylation, GPI anchor formation, hydroxylation, iodination, methylation, myristoylation, oxidation, proteolytic processing, phosphorylation prenylation, racemization, selenoylation, sulfation, transfer-RNA mediated addition of amino acids to proteins such as arginylation, and ubiquitination (see, for instance, Proteins-Structure and
- test agent means any identifiable chemical or molecule, including, but not limited to a small molecule, peptide, protein, sugar, nucleotide, or nucleic acid. Such a test agent can be natural or synthetic.
- the term "contacting" means bringing together, either directly or indirectly, a compound into physical proximity to a polypeptide or polynucleotide of the invention.
- the polypeptide or polynucleotide can be present in any number of buffers, salts, solutions, etc.
- Contacting includes, for example, placing the compound into a beaker, microtiter plate, cell culture flask, or a microarray, such as a gene chip, or the like, which contains either the ion channel polypeptide or fragment thereof, or nucleic acid molecule encoding an ion channel or fragment thereof.
- a ⁇ refers to a 38-43 amino acid peptide having a molecular weight of about 4.2 kD, which peptide is substantially homologous to the form of the protein described by Glenner et al., Biochem. Biophys. Res. Commun. 120, 885-890, (1984) including mutations and post translational modifications of the normal ⁇ -amyloid peptide.
- the ⁇ -amyloid peptide is an approximate 38-43 amino acid fragment of a large membrane-spanning glycoprotein, referred to as the ⁇ -amyloid precursor protein (APP).
- APP ⁇ -amyloid precursor protein
- ⁇ amyloid peptide also includes sequences 1-6, SEQ ID NOs.
- ⁇ amyloid peptide is derived from a region of APP adjacent to and containing a portion of the transmembrane domain.
- processing of APP at the ⁇ -secretase site cleaves the midregion of the A ⁇ sequence adjacent to the membrane and releases the soluble, extracellular domain of APP from the cell surface.
- This ⁇ -secretase APP processing creates "soluble APP ⁇ "-, which is normal and not thought to contribute to AD.
- N terminally truncated A ⁇ as used herein is defined as A ⁇ in which N terminal amino acid residues are missing.
- N terminal trancated A ⁇ encompasses A ⁇ _ 38j A ⁇ x-39 ⁇ A ⁇ x-40 , A ⁇ x- 1; A ⁇ x-42, and A ⁇ x- 3 wherein "x" is an integer greater than 1 and less than or equal to 22.
- N terminal truncated A ⁇ in the brains of patients suffering from sporadic or familial Alzheimer's disease due to mutations in PSl or APP and found that N-terminally trancated A ⁇ was overrepresented in Alzheimer's brains.
- Examples of N terminally truncated A ⁇ include those described by Russo.
- a ⁇ derived peptides as used herein is defined as encompassing A ⁇ and N terminal truncated A ⁇ .
- the term “A ⁇ derived peptide” therefore encompasses A ⁇ x-38 ⁇ A ⁇ x-39 ⁇ A ⁇ x-40 , A ⁇ x- 1> A ⁇ x- 2> and A ⁇ x . 43 where "x" is defined as greater than or equal to 1 and less than or equal to 22.
- ⁇ -amyloid precursor protein as used herein is defined as a polypeptide that is encoded by a gene of the same name localized in humans on the long arm of chromosome 21 and that includes A ⁇ (see above), within its carboxyl third.
- APP is a glycosylated, single-membrane spanning protein expressed in a wide variety of cells in many mammalian tissues. Examples of specific isotypes of APP which are currently known to exist in humans are the 695 amino acid polypeptide described by Kang et. al. (1987) Nature 325:733-736 which is designated as the "normal” APP The 751 amino acid polypeptide described by Ponte et al.
- val642 was numbered 717 and the 3 mutations were V717I, V717F, and V717G, respectively.
- Yamatsuji et al. ((1996) Science 272:1349-1352) concluded that these three mutations account for most, if not all, of the chromosome 21 -linked Alzheimer disease.
- Suzuki et al. ((1994) Science 264:1336-1340) suggested that these mutations may cause Alzheimer disease by altering APP processing in a way that is amyloidogenic.
- APP- 717 mutations were consistently associated with a 1.5- to 1.9-fold increase in the percentage of longer A ⁇ generated and that the longer species formed insoluble amyloid fibrils more rapidly than did the shorter ones. In transgenic mice, overexpression of such mutants mimics the neuropathology of AD.
- the term "APP" encompasses fragments of APP other than those which consist solely of A ⁇ or N terminally truncated A ⁇ .
- APP processing refers to proteolytic cleavage of the APP molecule. APP processing is subject to intervention and may be "modified.
- modulate A ⁇ derived peptide production means to change the amount of any A ⁇ derived peptide produced. It will be appreciated that this definition also includes changing the relative proportion of individual species of A ⁇ derived peptides one to another.
- a test agent which increases the ratio of A ⁇ 1-40 / (A ⁇ 1-40 + A ⁇ -4 ) would be said to be an "agent which modulates A ⁇ derived peptide production” as would an agent which reduces the levels of A ⁇ 1-40 and A ⁇ 1-42 each to the same extent would be "agent which modulates A ⁇ derived peptide production”.
- Polypeptides of the present invention are mutants of the presenilin polypeptides (mutant PSl polypeptide or mutant PS2 polypeptide). They are of interest because they are involved in the processing of amyloid precursor protein (APP) from which the major amylodogenic peptides A ⁇ 1-40 or A ⁇ 1- 2 are cleaved. The cleavage of A ⁇ from APP is accomplished by the action of two proteolytic activities commonly denoted as beta-secretase and gamma-secretase. The most common cause of familial Alzheimer's disease (FAD) are mutations found in the coding regions of the genes encoding presenilins 1 and 2 (hereinafter PSl and PS2).
- FAD familial Alzheimer's disease
- the clinical mutations all cause at least one phenotypic alteration: increase in the production of A ⁇ 1-42 from cells secreting the amyloid precursor protein (APP).
- Deletion of the PSl gene in mice greatly reduces gamma-secretase activity.
- the aspartic acid residues (D) found at positions 257 and 385 in PSl and the homologous aspartic acid residues found at positions 263 and 366 in PS2 are necessary for gamma-secretase activity since changing these aspartic acid residues to either alanine or glutamic acid residues abrogates production of A ⁇ in stably transfected cell lines carrying both mutated PS 1 and PS 2 (PSlm and PS 2m) cDNAs.
- the sequence following the D at amino acid position 257 in wild type PS 1 is - LV (at amino acid positions 258 and 259).
- the sequence found after the D at amino position 385 in the wild type PSl is -FI- (at amino acid positions 386 and 387).
- the situation with PS2 is analogous.
- the sequence following the D at 263 in wild type PS2 is -LV (at amino acid positions 264 and 265).
- the sequence following the D at 366 in wild type PS2 is -FI (at amino acid positions 367 and 368).
- the wild type sequences provide some minimal level of proteolytic activity with APP or gamma secretase as substrate to provide a phenotypic effect.
- the present invention optimizes the proteolytic activity so as to make possible an efficient assay for inhibitors of PSl and PS 2 activity.
- the present invention provides mutant PSl polypeptides and nucleic acids encoding them which have a threonine and conservative substitutions of threonine at the position directly adjacent to either putative canonical aspartic residues and/or a glycine at the amino acid position one amino acid removed from either canonical aspartate.
- the present invention provides either "single partial canonical mutants" of PSl (DLG, DTV, at 257-259 and DFG, DTI at 385-387) or "single complete canonical mutants"(DTG at positions 257-259 or 385-387). If conservative amino acid substitutions are introduced for T or G the mutants are designated “substituted single partial canonical mutants” or " substituted single complete canonical mutants" respectively.
- a single mutant PS 1 , mutated at 258-259 to encode DLG would be designated 'PSl-DLG/wt" and would be described as a "single partial canonical mutant".
- a single mutant PS 1 mutated at 258- 259 to encode DTG at that positions would be designated PSl-DTG/wt and would be described as a "single complete canonical mutant"
- the present invention also provides mutant PS 2 polypeptides and nucleic acids encoding them which have a threonine and conservative substitutions of threonine at the position directly adjacent to either putative canonical aspartic residues and/or a glycine at the amino acid position one amino acid removed from either canonical aspartate.
- the present invention provides either "single partial canonical mutants" of PS2 (DLG, DTV, at 263-265 and DFG, DTI at 366-368) or "single complete canonical mutants"(DTG at positions 263-265 or 366-368). If conservative amino acid substitutions are introduced for T or G the mutants are designated “substituted single partial canonical mutants” or " substituted single complete canonical mutants” respectively.
- a single mutant PS2, mutated at 264-265 to encode DLG would be designated 'PSl-DLG/wt" and would be described as a "single partial canonical mutant".
- the present invention provides mutant PSl polypeptides and nucleic acids encoding them which have a threonine and conservative substitutions of threonine at the position directly adjacent to both putative canonical aspartic residues and/or a glycine at the amino acid position one amino acid removed from both canonical aspartate.
- the present invention provides either "double partial canonical mutants" of PSl (DLG, DTV, at 257-259 and DFG, DTI at 385-387) or "double complete canonical mutants"(DTG at positions 257-259 or 385-387). If conservative amino acid substitutions are introduced for T or G the mutants are designated “substituted double partial canonical mutants” or " substituted double complete canonical mutants” respectively.
- a double mutant PSl, mutated at 258-259 and 385-387 to encode DLG would be designated 'PSl-DLG/DLG" and would be described as a "double partial canonical mutant".
- a double mutant PSl mutated at 258-259 and 385-387 to encode DTG at both positions would be designated PS1-DTG/DTG and would be described as a "double complete canonical mutant"
- the present invention also provides mutant PS2 polypeptides and nucleic acids encoding them which have a threonine and conservative substitutions of threonine at the position directly adjacent to either putative canonical aspartic residues and/or a glycine at the amino acid position one amino acid removed from either canonical aspartate.
- the present invention provides either "double partial canonical mutants" of PS2 (DLG, DTV, at 263-265 and DFG, DTI at 366-368) or "double complete canonical mutants"(DTG at positions 263-265 or 366-368). If conservative amino acid substitutions are introduced for T or G the mutants are designated “substituted double partial canonical mutants” or " substituted double complete canonical mutants” respectively.
- a double mutant PS2 mutated at 264-265 to encode DLG would be designated 'PSl-DLG/wt" and would be described as a "single partial canonical mutant".
- a single mutant PS2 mutated at 264-265 and 367-368 to encode DTG at both positions would be designated PS2- DTG/DTG and would be described as a "double complete canonical mutant"
- polypeptides of the present invention would be useful to identify test agents which might inhibit their enhanced activity and thereby identify chemical structures which would be useful to inhibit the native activity of PSl or PS2 in screens.
- the enhanced activity of the polypeptides of the present invention also provide a robust assay for candidate compound inhibitors of the native activity of the PS 1 and PS2 polypeptides.
- codons constitute triplet sequences of nucleotides in mRNA and their corresponding cDNA molecules Codons are characterized by the base uracil (U) when present in a mRNA molecule but are characterized by base thymidine (T) when present in DNA.
- U base uracil
- T base thymidine
- a simple change in a codon for the same amino acid residue within a polynucleotide will not change the sequence or stracture of the encoded polypeptide.
- the table above provides a means of identifying the particular nucleotides at issue.
- the table above discloses that the posible triplet sequences are ACA, ACG, ACC and ACU (ACT if in DNA)
- the objective of this experiment was to introduce aspartyl protease consensus sequence motifs at the adjacent to the aspartic acid residues within transmembrane 6 and 7 of PSl and PS2 so that the effects on APP processing could be accessed
- mutant polynucleotides encoding mutant PSl and PS2 polypeptides
- expression constructs are preferably utilized for production of an encoded protein, but also may be utilized simply to amplify a mutant PS 1 or PS2 encoding polynucleotide sequence.
- host cells including prokaryotic and eukaryotic cells, comprising a polynucleotide of the invention (or vector of the invention) in a manner, which permits expression of the encoded mutant PS 1 or PS2 polypeptide.
- Polynucleotides of the invention may be introduced into the host cell as part of a circular plasmid, or as linear DNA comprising an isolated protein coding region or a viral vector.
- Methods for introducing DNA into the host cell well known and routinely practiced in the art include transformation, transfection, electroporation, nuclear injection, or fusion with carriers such as liposomes, micelles, ghost cells, and protoplasts.
- Expression systems of the invention include bacterial, yeast, fungal, plant, insect, invertebrate, and mammalian cells systems.
- Host cells for expression of mutant PSl or PS 2 polypeptides include prokaryotes, yeast, and higher eukaryotic cells.
- Suitable prokaryotic hosts to be used for the expression of mutant PS 1 or PS2 polypeptides include but are not limited to bacteria of the genera Escherichia, Bacillus, and Salmonella, as well as members of the genera Pseudomonas, Streptomyces, and Staphylococcus.
- the isolated nucleic acid molecules of the invention are preferably cloned into a vector designed for expression in eukaryotic cells, rather than into a vector designed for expression in prokaryotic cells.
- Eukaryotic cells are preferred for expression of genes obtained from higher eukaryotes because the signals for synthesis, processing, and secretion of these proteins are usually recognized, whereas this is often not trae for prokaryotic hosts (Ausubel, et al, ed., in Short Protocols in Molecular Biology, 2nd edition, John Wiley & Sons, publishers, pg.16-49, 1992.).
- Eukaryotic hosts may include, but are not limited to, the following: insect cells, African green monkey kidney cells (COS cells), Chinese hamster ovary cells (CHO cells), human 293 cells, human SH-EP1 cells and murine 3T3 fibroblasts.
- Expression vectors for use in prokaryotic hosts generally comprise one or more phenotypic selectable marker genes. Such genes generally encode, e.g., a protein that confers antibiotic resistance or that supplies an auxotrophic requirement.
- genes generally encode, e.g., a protein that confers antibiotic resistance or that supplies an auxotrophic requirement.
- a wide variety of such vectors are readily available from commercial sources. Examples include pSPORT vectors, pGEM vectors (Promega), pPROEX vectors (LTI, Bethesda, MD), Bluescript vectors (Stratagene), and pQE vectors (Qiagen).
- the mutant PS 1 or PS2 polypeptides may also be expressed in yeast host cells from genera including Saccharomyces, Pichia, and Kluveromyces.
- Preferred yeast hosts are S. cerevisiae and P. pastoris.
- Yeast vectors will often contain an origin of replication sequence from a 2 micron yeast plasmid, an autonomously replicating sequence (ARS), a promoter region, sequences for polyadenylation, sequences for transcription termination, and a selectable marker gene.
- Vectors replicable in both yeast and E. coli may also be used.
- a. shuttle vector will also include sequences for replication and selection in E. coli.
- Insect host cell culture systems may also be used for the expression of mutant PSl or PS2 polypeptides.
- the mutant PSl or PS2 polypeptides of the invention are expressed using a baculoviras expression system. Further information regarding the use of baculoviras systems for the expression of heterologous proteins in insect cells are reviewed by Luckow and Summers, Bio/Technology 6:47 (1988).
- the mutant PSl or PS2 polypeptide is expressed in mammalian host cells.
- suitable mammalian cell lines include the COS-7 line of monkey kidney cells (Gluzman et al, Cell 23:175 (1981)), Chinese hamster ovary (CHO) cells, and human 293 cells.
- a suitable expression vector for expression of the mutant PS 1 or PS 2 polypeptide of the invention will of course depend upon the specific host cell to be used, and is within the skill of the ordinary artisan.
- suitable expression vectors include pcDNA3 ( ivitrogen) and pSVL (Pharmacia Biotech).
- Expression vectors for use in mammalian host cells may include transcriptional and translational control sequences derived from viral genomes. Commonly used promoter sequences and enhancer sequences which may be used in the present invention include, but are not limited to, those derived from human cytomegaloviras (CMV), Adenovirus 2, Polyoma virus, and Simian virus 40 (SV40).
- CMV human cytomegaloviras
- Adenovirus 2 Polyoma virus
- SV40 Simian virus 40
- H125.3-16 Transient transfections were carried out in 4 different cell lines: H125.3-16, N2A- APP, H143.3-23, and H167-11.
- the H125.3-16 cell line expresses human APP695 Swedish mutant cDNA with a dilyine motif in HEK-293 cells
- the H143.3-23 cell line expresses human APP695 Swedish mutant cDNA in HEK-293 cells.
- Development of the HI 25.3- 16 and HI 43.3 -23 cell lines has been described previously (8).
- the HI 67-11 cell line was developed using the same methods as the H125.3-16 and H143.3-23 cell lines, except the 167 construct DNA (pIRES-EGFP harboring the human APP695 V642F mutant cDNA containing a dilyine motif) was used.
- the 167 DNA construct was made by performing site-directed mutagenesis on the 142.3 construct (pIRES-EGFP harboring human APP695 with dilyine motif, obtained from Mark Gurney) using the Stratagene Quik-Change site-directed mutagenesis kit with the following oligonucleotides ALZ-111 5'GCG ACA GTG ATC tTC ATC ACC TTG GTG 3' and ALZ-112 5'CAC CAA GGT GAT GAa GAT CAC TGT CGC 3' to introduce the V642F FAD mutation.
- the N2A-APP cell line was developed by Pharmacia The N2A-APP cell line expresses human APP695 Swedish mutant with a dilyine motif in a Neura-2A mouse neuroblastoma cell line. The methods for development of the N2A-APP cell line have been described previously (9).
- Complete media for the HEK-293 APP stable cell line is DMEM containing 10% fetal bovine serum, lOOU/ml penicillin, lOO ⁇ g/ml streptomycin, ImM sodium pyravate, and 400 ⁇ g/ml G418.
- Complete media for the N2A-APP stable cell line is MEM containing 10% fetal bovine serum, lOOU/ml penicillin, lOO ⁇ g/ml streptomycin, 2mM glutamine, ImM sodium pyravate, O.lmM non-essential amino acids, and 400 ⁇ g/ml G418.
- Conditioned media was collected from the cells 48 hours after transfection and then analyzed by Elisa assay for levels of A ⁇ 1-40 and A ⁇ -42 . The results are discussed in Example 3
- polypeptides of the invention may be produced by natural cell sources or may be chemically synthesized, but are preferably produced by recombinant procedures involving host cells of the invention.
- Use of mammalian host cells is expected to provide for such post-translational modifications (e.g., glycosylation, truncation, lipidation, and phosphorylation) as may be needed to confer optimal biological activity on recombinant expression products of the invention.
- the invention also embraces allelic variants of mutant PS 1 or PS2 polypeptides wherein the enhanced protease activity of the mutant PS 1 or PS 2 polypeptides is maintained.
- variants include insertion, deletions or substitutions.
- Insertional variants also include fusion proteins wherein the amino and/or carboxy termini of the mutant PSl and PS 2 polypeptides.
- polypeptides of the invention disclosed in SEQ ID NOS: 4, 5, 6, 10, 11, and 12, and 14 contain transmembrane sequences necessary for insertion into the cell membrane, the invention also includes polypeptides with the transmembrane sequences removed.
- the invention provides deletion variants wherein one or more amino acid residues in a mutant PSl or PS2 polypeptides are removed.
- Deletions can be effected at one or both termini of the mutant PS 1 or PS2 polypeptides or with removal of one or more residues within the mutant PS 1 or PS2 polypeptide amino acid sequence.
- the invention provides substitution variants mutant PS 1 or PS 2.
- substitution variants include those polypeptides wherein one or more amino acid residues of a mutant PS 1 or PS2 polypeptides are removed and replaced with alternative residues.
- the substitutions are conservative in nature, however, the invention embraces substitutions that are also non-conservative.
- Variant polypeptides include those wherein conservative substitutions have been introduced by modification of polynucleotides encoding polypeptides of the invention. Amino acids can be classified according to physical properties and contribution to secondary and tertiary protein structure. A conservative substitution is recognized in the art as a substitution of one amino acid for another amino acid that has similar properties. Exemplary conservative substitutions are set out in Table A
- the invention also conveys the methods for using the novel constructs to identify compounds which will be useful in treating the following pathologies: Alzheimer's disease, Parkinson's disease, multiple sclerosis, Huntington's disease, amylotrophic lateral sclerosis, head injury damage, Picks Disease, frontal lobe dementia, cerebellar degeneration, ischemia reperfusion injury, stroke, ischemic injury and schizophrenia, hereinafter referred to as "the Diseases".
- the invention relates to methods provided by the invention for identifying agonist, antagonists or inhibitors of activity intrinsic to wild-type PSl or PS2. Various assays are described hereinafter.
- HEK cells stably transfected with the APP695sw-KK cDNA H125.3-16 to produce moderate levels of A ⁇
- HEK cells stably transfected with APP695sw without the dilysine motif H143.3-23
- HEK cells stably transfected with APP695V642F-KK H 67-11.
- Analysis of conditioned media (CM) 48 hours after transfection show the following results.
- the values of A ⁇ for mock (pcDNA vector) transfected cells for each stable cell line were used as a reference for the % change A ⁇ values obtained after transfection with the various plasmids.
- a PS 1 construct having the -TG- substitution only at the 386 and 387 positions (within transmembrane 7) was compared to the PS 1-DTG/DTG, PS 1-M146V and PS 1-C410Y constructs.
- the latter two PSl constructs replicate the clinical mutations found to cause early onset FAD.
- a ⁇ 1- 2 production is increased in CM from fibroblasts taken from patients having the Ml 46V and C410Y mutations (1).
- the introduction of the single -TG- mutation following the aspartic acid residue in TM 7 of PS 1 appears to have a similar effect on A ⁇ _ 2 production as the double DTG substitution in both the HI 25.3 cells as well as the mouse neuroblastoma Neuro 2 A cells stably transfected with APP695sw-KK.
- the -TG- substitution is substantially more effective at increasing A ⁇ 42 production than the clinical mutations examined.
- the ratio of the PS 1-DTG/DTG A ⁇ 1- 2 to the PS1-M146V A ⁇ 1- 2 is roughly 5:1, whereas for the ⁇ 9 to the M146V mutations the ratio is 2: 1 (1).
- the ⁇ 9 mutation is a very efficacious clinical mutant in increasing A ⁇ 1-42 .
- Soluble APP levels were also measured by Elisa assay for conditioned media from all PSl and PS2 DTG/DTG transfection experiments; however, no consistent, definitive changes in sAPP levels were detected.
- TM6 and 7 aspartic acid residues of PSl or PS2 robustly increases A ⁇ 1- 2 production in neuronal and non-neuronal cell lines whereas A ⁇ 1- 0 is unchanged.
- Another aspect of the present invention is directed to methods of identifying test agents which modulate activity of an isolated mutant presenilin comprising contacting an PSl or PS 2 polypeptide with a test compound, and determining whether the compound modifies activity of the PSl or PS2 polypeptide.
- the activity of the polypeptide in the presence of the test compound is compared to the activity in the absence of the test compound. Where the activity of the sample containing the test compound is higher than the activity in the sample lacking the test compound, the compound will have increased activity of the polypeptide. Similarly, where the activity of the sample containing the test compound is lower than the activity in the sample lacking the test compound, the compound will have inhibited the activity of the polypeptide.
- Such compounds are inhibitors of the invention.
- An inhibitor of the invention as measured either in a cell based or in-vitro assay either inhibits the production of A ⁇ _ 40 or A-beta 1- 2 altogether or alters the ratio A ⁇ 1- 0 / A ⁇ 1-40 + A ⁇ 1-42 (in these assays, or in cell extracts or after release into the medium in cell based assays by ELISA or other assays which are known in the art (Borchelt et al, Neuron 17: 1005-1013 (1996); Citron et al, Nat. Med. 3: 67-72 (1997)).
- the inhibitors of the invention exhibit a variety of chemical structures, which can be generally grouped into peptide and non-peptide inhibitors,
- the invention does not restrict the sources for suitable inhibitors, which may be obtained from natural sources such as plant, animal or mineral extracts, or non-natural sources such as small molecule libraries, including the products of combinatorial chemical approaches to library construction, and peptide libraries.
- suitable inhibitors which may be obtained from natural sources such as plant, animal or mineral extracts, or non-natural sources such as small molecule libraries, including the products of combinatorial chemical approaches to library construction, and peptide libraries.
- HEK293 cells stably transfected with a nucleic acid encoding mutant PSl or PS2 are grown in bioreactors (Analytical Biological Services, Wilmington, DE) in 90% DMEM, 10% FBS, 2 mM glutamine, and 100 ⁇ g/ml each of penicillin and streptomycin. Frozen cells are resuspended in buffer A (50 mM Mes, pH 6.0/5 mM MgCl 2 /5 mM CaCl 2 /150 mM KC1) containing complete protease inhibitor mixture (Boehringer Mannheim).
- buffer A 50 mM Mes, pH 6.0/5 mM MgCl 2 /5 mM CaCl 2 /150 mM KC1
- the cells are broken by single-pass through a French press (Spectronic Instruments, Rochester, NY). Cell debris and nuclei are removed by centrifugation at 800 x g for 10 min. The supernatant solutions are centrifuged at 100,000 x g for 60 min. The ensuing pellets are resuspended in buffer A, and the centrifugation was repeated. The final membrane pellets are resuspended in buffer A to yield a protein concentration of approximately 12 mg/ml. All procedures are performed at 4°C. The membranes are stored at -70°C.
- Detergent solubilization of HEK-mutant PSl or PS2 cell membranes involves treatment with 1% CHAPSO (3-[(3-cholamidopropyl)dimethylammonio]- 2-hydroxy-l-propanesulfonate) for 60 min at 4°C and centrifugation at 100,000 x g for 60 min.
- CHAPSO 3-[(3-cholamidopropyl)dimethylammonio]- 2-hydroxy-l-propanesulfonate
- the ensuing supernatant solution is designated "solubilized -secretase" In Vitro -Secretase Assay.
- a DNA fragment encoding amino acids 596-695 of the 695-aa isoform of APP (APP695) and the Flag sequence (DYKDDDDK) at theC terminus are generated by PCR amplification with suitably designed oligonucleotides and the APP695 cDNA.
- the Met that serves as the translation start site is residue 596 of APP695 (the PI residue with respect to the -secretase cleavage site).
- This DNA fragment is then inserted into the prokaryotic expression vector pET2-21b (Novagen).
- ClOOFlag The recombinant protein, ClOOFlag, is overproduced in Escherichia coli [strain BL21(DE3)] and purified by Mono-Q column chromatography (Amersham Pharmacia Biotech). ClOOFlag (1.7 ⁇ M) is incubated with cell membranes (0.5 mg/ml) in the presence of CHAPSO, CHAPS (3-[(3-cholamidopropyl)dimethylammonio]-l- propanesulfonate), or Triton X-100 (0, 0.125, 0.25, 0.5, or 1%) in buffer B (50 mM Pipes, pH 7.0/5 mM MgCl 2 /5 mM CaCl 2 /150 mM KC1) at 37°C.
- buffer B 50 mM Pipes, pH 7.0/5 mM MgCl 2 /5 mM CaCl 2 /150 mM KC1
- the reactions were stopped by adding PJPA (150 mM NaCl/1.0% NP-40/0.5% sodium deoxycholate/0.1% SDS/50 mM Tris-HCl, pH 8.0) and boiling for 5 min.
- the samples are centrifuged and the supernatant solutions is assayed for the A peptides by ECL.
- the A40- and A42-related products from -secretase-mediated processing of ClOOFlag possess a Met at the N terminus and are thus defined as M-A40 and M-A42, respectively.
- APP- Sw-KK (An APP construct with a di-lysine motif at the C terminus) has been described in US Patent Application Serial No. 09/416901 filed 13 October 1999 and also in WO 00/17369 "Alzheimer's Disease Secretase" published 30 March 2000.
- Cells were plated at a concentration of 2.5 x 10 4 or 5.0 x 10 4 cells per well of a 96 well dish on day 1. Cells were treated with various concentrations of drugs on day 3.
- Conditioned media was harvested 24 hours post-treatment and analyzed in an Elisa assay for A ⁇ 40 or A ⁇ 42 levels (Described below).
- An MTS assay (Promega) was performed on the cells 24 hours post-treatment to assess toxicity levels of the drugs.
- ELISA Procedure Materials Primary Antibody 6E10 was purchased from Senetek PLC (St. Louis, MO.).
- Secondary Antibodies 162, 163, 164 and 165 were purchased from New York Institute for Basic Research (Staten Island, NY.), ⁇ Amyloid Standards were purchased from Bachem (Torrence, CA.). ⁇ - Amyloid 1-40 is cat #ZN571) and 1-42 is cat #ZN327) Neutravidin was purchased from Pierce (Rockford,IL.). The tetramethylbenzidine color development system was purchased from Kirkigaard & Perry Laboratories Inc. (Gaithersburg, MD.). Plates were read on a Molecular Devices Thermomax Plate Reader with integrated software that calculated the data and analyzed confidence values for the samples. The coating buffer is 0.1M NaHCO 3 , pH8.2.
- Wash buffer is Dulbecco's PBS + .05% Tween 20 (PBST).
- Blocking buffer is PBST+1 %BS A (make up fresh the day of assay).
- the substrate is TMB Kirkegaard & Perry Labs, (cat.no.50-76-03). Plates are Costar 96 well half area EIA plates (cat.no.3690).
- Supplemental BSA is supplied as PBST+10% BSA made fresh on the day of assay.
- H125.3-16 cell line is a cell line stably expressing a version of the APPsw-kk construct, APA2 coexpresses APPsw-kk and PSlwt and APB10 coexpresses APPsw- kk and PS 1-DTG385.
- the objective of the experiments was to see if the dose response profile in the 2 cases where a native PSl was active(H125.3-16, APA2) were different from the dose response profile of a cell line in which the primary contribution came from the action of the PS1-DTG385 version of PSl.
- Fig.3 shows that the dose response profile of 512088 on the two PSlwt cell lines was distinctly biphasic in inhibition of A ⁇ 1-4 o. This profile was not so apparent in the DTG385 cell line but inhibition was achieved at concentrations of 512088 beginning at 1-2 uM versus 10 uM for the PSlwt cell lines.
- the biphasic dose response was in this case muted in comparison to the A ⁇ 1- dose response in the PS1DTG385 cell line (Fig. 4).
- the dose response for the levels of A ⁇ -42 secreted from the PS1-TG385 cell line is clearly biphasic (Fig.4) and resembles the dose response for A ⁇ 1-40 from the PSlwt cell lines.
- the levels of A ⁇ 1-42 are increased significantly with respect to A ⁇ 40 when the cell line co-expresses PS1-DTG385 (Fig. 4).
- the inhibitory phase of the dose response for A ⁇ 1- 2 occurs at ⁇ 10uM 512088 in the PS1-DTG385 cells whereas for the PSlwt cells the inhibitory phase has not started at 30 uM . Above this concentration of drug cellular toxicity becomes an issue.
- Fig. 5 shows the treatment of the cells with L685,458.
- the PS1-DTG385 cell line responded to drug with a linear decrease in A ⁇ j -40 production as drug concentration increased.
- Both of the PSlwt cell lines gave a biphasic dose response.
- All three cell lines gave a biphasic dose reponse with respect to A ⁇ 1- 2 production ( Figure 6).
- the potency of L685,458 is approximately 10 fold greater that 512088.
- Figs. 7 and 8 show the effects of the proteosome inhibitor MG132 on A ⁇ 1-40 and A ⁇ 1-4 production respectively..
- Inhibition of A ⁇ 1- A ⁇ - 0 production by MG132 is not strongly biphasic in any of the cell lines except the parental PSlwt HEK125.3- 16 (Fig. 7). Inhibition of A ⁇ A ⁇ 1-42 is not strongly biphasic in the PS1-DTG385 cells but the slight increase in A ⁇ A ⁇ 1-42 detected in the media at doses from 0.1 to 0.3 uM suggest that this inhibition curve is biphasic (Fig.8). The inhibition curve for the two PSlwt cell lines is strongly biphasic. The peaks in the dose response for the PSlwt occurs at 10 uM whereas for the PS1DTG385 the peak is lower (0.3 uM).
- Figs. 9 and 10 demonstrate that the DMSO vehicle has no effect on the ability of the cells to produce A ⁇ 1-40 or A ⁇ 1-42 .
- PS1DTG385 construct seems to confer a different response to the protease inhibitors used in this study from the PSlwt activity in production of A ⁇ 1- 0 .
- Response to the proteasome inhibitor MG132 appears to be similar for all three cell lines with respect to secretion of A ⁇ 1-40 but differs significantly with respect to A ⁇ 1-42 .
- MG132 appears to potentiate the production of A ⁇ -42 relative to A ⁇ 1-40 at doses ranging from 0.3 uM to 10 uM in PSlwt cells.
- the present invention provides a tool for analyzing the molecular mechanism of presenilin action and the pathogenesis of Alzheimer's Disease. More specifically, it elucidates the mechanism underlying APP processing after synthesis of these proteins. More importantly, it provides an in vivo screening system for drags that can inhibit synthesis and deposition of beta amyloid A ⁇ 1-42 , and thereby prevent or alleviate the symptoms of Alzheimer's Disease.
- a DNA fragment encoding a mutant presenilin may be integrated into the genome of the transgenic animal by any standard method such as are described in Hogan et al., MANIPULATING THE MOUSE EMBRYO, Cold Spring Harbor Laboratory Press, 1986; Kraemer et al., GENETIC MANIPULATION OF THE EARLY MAMMALIAN EMBRYO, Cold Spring Harbor Laboratory Press, 1985; Krimpenfort et al., U.S. Pat. No. 5,175,384; Krimpenfort at al., Biotechnology, 9: 88 (1991), all of which are incorporated by reference.
- the DNA fragment is microinjected into pronuclei of single-cell embryos in non-human mammalian animals, such as rodents such as mice, rabbits, cats, dogs or larger domestic or farm animals.
- transgenic animals are overexpress or express at physiologic levels the mutant PSl and PS2 of the invention.
- the injected DNA contains an ubiquitous promoter to drive expression of the mutant PSl or PS2 polypeptides in various types of the cells in transgenic mice.
- the transgenic mice of the invention also overexpress APP, more preferably the APP is altered to contain either the Swedish mutation. (McConlogue US Patent Nos. 5,850,003 and 5,612,486 herein incorporated by reference.) or the London mutation
- the transgene sequences encoding the mutant PS 1 and PS2 polypeptides are under the transcriptional control of promoters and/or enhancers (and/or silencers) which are "neuron specific promoters' .
- promoters confer high level expression and/or in a cell type- specific expression pattern in neuronal cell types.
- the rat neural-specific enolase (NSE) promoter (Forss-Petter (1990) Neuron 5; 137) is a preferred transcriptional regulatory element for operable linkage to a nucleotide sequence encoding a mutant PSl or PS 2 polypeptide.
- Other promoters and/or enhancers which confer efficient expression to the transgene-encoded mutant PS 1 or PS2 sequence in brain tissue generally are preferred.
- promoters having different strengths may be substituted in the discretion of the practitioner, however it is essential that the promoter function in the nonhuman host and it is desirable in some embodiments that the promoter drive expression in a developmental pattern or cell type-specific pattern (and at expression levels) similar to a naturally-occurring PSl or PS2 gene in a parallel host animal lacking the transgene.
- the transgenic animal disclosed in the present invention provides a useful system to analyze the interaction between APP and the mutant PS 1 and PS2 -processing protease in vivo, and the interaction between the endogenous mouse APP and the optionally introduced human APP. They are also useful for screening anti-AD drugs in vivo.
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