EP1383930A1 - Method and kit for diagnosing gh deficiency - Google Patents
Method and kit for diagnosing gh deficiencyInfo
- Publication number
- EP1383930A1 EP1383930A1 EP02766719A EP02766719A EP1383930A1 EP 1383930 A1 EP1383930 A1 EP 1383930A1 EP 02766719 A EP02766719 A EP 02766719A EP 02766719 A EP02766719 A EP 02766719A EP 1383930 A1 EP1383930 A1 EP 1383930A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- splice site
- exon
- deficiency
- analysing
- mutation
- 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- Withdrawn
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Classifications
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12Q—MEASURING OR TESTING PROCESSES INVOLVING ENZYMES, NUCLEIC ACIDS OR MICROORGANISMS; COMPOSITIONS OR TEST PAPERS THEREFOR; PROCESSES OF PREPARING SUCH COMPOSITIONS; CONDITION-RESPONSIVE CONTROL IN MICROBIOLOGICAL OR ENZYMOLOGICAL PROCESSES
- C12Q1/00—Measuring or testing processes involving enzymes, nucleic acids or microorganisms; Compositions therefor; Processes of preparing such compositions
- C12Q1/68—Measuring or testing processes involving enzymes, nucleic acids or microorganisms; Compositions therefor; Processes of preparing such compositions involving nucleic acids
- C12Q1/6876—Nucleic acid products used in the analysis of nucleic acids, e.g. primers or probes
- C12Q1/6883—Nucleic acid products used in the analysis of nucleic acids, e.g. primers or probes for diseases caused by alterations of genetic material
-
- 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
- C07K14/575—Hormones
- C07K14/61—Growth hormone [GH], i.e. somatotropin
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12Q—MEASURING OR TESTING PROCESSES INVOLVING ENZYMES, NUCLEIC ACIDS OR MICROORGANISMS; COMPOSITIONS OR TEST PAPERS THEREFOR; PROCESSES OF PREPARING SUCH COMPOSITIONS; CONDITION-RESPONSIVE CONTROL IN MICROBIOLOGICAL OR ENZYMOLOGICAL PROCESSES
- C12Q2600/00—Oligonucleotides characterized by their use
- C12Q2600/156—Polymorphic or mutational markers
Definitions
- the present invention relates to a method and kit for diagnosing GH (growth hormone) deficiency, in particular isolated growth hormone deficiency II (IGHD II).
- GH growth hormone
- IGHD II isolated growth hormone deficiency II
- IGHD isolated growth hormone deficiency
- the present invention provides novel markers for diagnosing IGHD II. These markers provide early and accurate diagnosis of affected children.
- the present inventors have found that not only splice site mutations causing skipping of exon 3 of GH-1 but also GH-1 missense mutations result in a mutant GH with a dominant negative effect. Thus it is very important to also investigate children with suspected GH-deficiency for missense mutations.
- the invention relates to a method for diagnosis of autosomal dominantly inherited isolated GH deficiency (IGHD II) in a patient sample, comprising in vitro analysing the presence or absence of the novel missense mutation G 6191 to T in exon 4 of GH-1 which changes valine 110 to phenylalanine.
- IGHD II autosomal dominantly inherited isolated GH deficiency
- the method also comprises analysing the presence or absence of GH-1 splice site mutations causing skipping of exon 3 of GH-1.
- the splice site mutation is the novel +2T to C transition of the second base of the intron 3 donor splice site.
- the present invention provides two novel disease markers for IGHD II.
- the method of the invention preferably comprises amplification of the GH-1 gene of the patient or fragments derived from the GH-1 gene.
- the intron 3 and/ or exon 2-5 are amplified.
- the method comprises PCR amplification of the GH-1 gene of the patient and nested PCR of overlapping constituent fragments of the GH-
- the amplified fragments may be restriction enzyme digested or directly sequenced for detection of said mutations.
- the invention provides a kit for diagnosis of autosomal dominantly inherited isolated GH deficiency (IGHD II) in a patient sample, comprising means for analysing the presence of absence of the missense mutation is G 6191 to T in exon 4 of GH-1 which changes valine 110 to phenylalanine.
- IGHD II autosomal dominantly inherited isolated GH deficiency
- the means may comprise reagents, primers etc for analysing a part of the GH-1 gene which includes this single nucleotide polymorphism.
- the kit also comprises means for analysing the presence or absence of
- GH-1 splice site mutations causing skipping of exon 3 of GH-1.
- the splice site mutation is preferably a +2T to C transition of the second base of the intron 3 donor splice site.
- the kit of the invention may comprise one or more specific GH-1 primer pairs selected from GH3.2 (nt 6578-6600), GH5.1 (nt 5503-5525); GH5.2 (nt 5555-5577),
- GH3.4 (nt 6547-6568); GH5.7 (nt 581-5835), GH3.7 (nt 6121-6140) and the following sequencing primers GS5.8 (nt 5629-5648), GS3.8 (6495-6515).
- the kit may comprise one or more of the following restriction enzymes MvnII, Nlalll, Ddel, Maell.
- IGHD II Autosomal dominantly inherited isolated GH deficiency
- the clinical data of the affected individuals were analyzed.
- the onset of growth failure was earlier and the degree more severe in the affected children with GH-1 splice site mutations in comparison to those with the GH-1 missense mutation.
- the severity of the phenotype was inter-individually very variable, even within the same family.
- the age at diagnosis was between 0.8 and 9.6 years (median 5.1), height at diagnosis was between -2.5 and -8.1 SDscore (median -4.0).
- Most of the children were lean at diagnosis with a BMI ranging from -1.7 to +3.3 SDscore (median -0.4).
- the 5 affected adults had final heights between -1.8 and -4.5 SDscore (median -3.6), centripetal obesity and muscular hypotrophy.
- IGF-I and IGFBP3 serum levels of all affected children were severely diminished (median IGF I 15.1 ⁇ g/L, median IGFBP3 910 ⁇ g/L).
- the maximum GH peak in a total of 25 stimulation tests was between 0. 1 and 5.0 ⁇ g/L (median 0.9) indicating severe GH deficiency.
- the height of the adenohypophysis studied by MRI was normal in 2 affected children and mildly decreased in 2 others. Substitution with GH resulted in good catch-up growth in all treated children.
- Fig. 1 shows pedigrees of the previously reported Families 4 and 5. Filled symbols indicate the affected individuals.
- Fig. 2 shows pedigrees of Families 1 and 2 and electrophoretic analysis of the amplified GH-1 fragment from family members (1-9) and normal controls (C) after restriction enzyme digestion with Mvnl (Family 2) or Nlall (Family 1) whose recognition sites are underlined below. The band of the undigested fragment is indicated by the arrow. Both heterozygote splice site mutations generate one new recognition site for the respective enzyme which is evident by the appearance of two smaller bands after digestion.
- M mol wt marker.
- Fig. 4 shows electrophoretic analysis of the amplified GH- 1 cDNA.
- Lane 1 contains the amplified cDNA from a patient with the GH-1 intron 3 + 1 G to C donor splice site mutation (Family 5) which shows in comparison to the normal control (C) a shortening of the major fragment (arrow b) demonstrating loss of exon 3.
- C normal control
- VI 10F T missense mutation
- Lane 2 The same analysis from one patient with the novel G 6191 to T missense mutation (VI 10F) is shown in Lane 2.
- the main fragment is identical in size to the control's fragment (C) excluding missplicing (arrow a).
- M mol wt marker.
- Fig. 5 shows alignment of the human GH sequence (amino acids 104-117) with the sequences from mammalian and non-mammalian GHs.
- the valine at position 110 is highly conserved and is located next to the N-terminal beginning of the third -helix.
- Fig. 6 is a comparison of age and height SDscore at diagnosis of the 12 children with IGHD II.
- the bars showing data from siblings have the same filling.
- the black bars show the data from the family with V 110F GH.
- the high variability of growth failure in IGHD II, even within the same family, is clearly demonstrated.
- GH serum levels were measured in different clinical centers by several assays (RIA,
- IGF-I and IGFBP3 concentrations in Families 1, 2, 3 and 5 were determined using the same assays by Blum et al. (18).
- Genomic DNA was extracted from 5 ml frozen EDTA blood using an extraction kit (Genomix Blood Scale-Up, Talent, Triest, Italy) which was based on chloroform extraction after initial blood lysis.
- Total RNA from peripheral lymphocytes was extracted according to the method described by Chomczynski and Sacchi (19).
- the used primer corresponded to nucleotides 6578-6600 (GH3.2) of the reported GH-1 sequence (20).
- the PCR was performed using GH3.2 and the upstream primer 5503-5525 (GH5.1).
- the up-stream primer of the nested PCR corresponded to the nucleotides 5555-5577 (GH5.2) and the down-stream primer to 6547-6568 (GH3.4).
- the nested PCR was performed with the upstream primer GH5J (5816-5835) and the downstream-primer GH3.7 (6121-6140).
- the used sequencing primers were GS5.8 (5629-5648) and GS3.8 (6495-6515).
- RNA (5 ⁇ g) was reverse transcribed in PCR buffer and the total cDNA was amplified by nested PCR as previously described (5).
- the PCR product (10 ⁇ l of the reaction volume) were electrophoresed on 8% PAGE.
- Genomic DNA was amplified by nested PCR.
- the first PCR was performed with 0.2 ⁇ g gDNA, 100 pmol of each primer GH5.1 and GH3, 2.5 U of Taq DNA polymerase (Qiagen, Hamburg, Germany), 0.2 mmol/ 1 of each dNTP in Qiagen PCR buffer with a final volume of 50 ⁇ l.
- the reaction mixture was cycled 30 times (95°C, 60 s; 65°C, 60 s; 72°C, 90 s).
- the 325 bp fragment of GH-1 (5816-6140) containing the complete intron 3 was digested with 20 U MvnII or with 20 U of Nlalll or with 10 U of Ddel (Boehringer Mannheim, Germany) in a volume of 30 ⁇ l containing 10 ⁇ l PCR product for 3 hrs.
- the 1014 bp fragment of GH-1 (5555-6568) containing the genomic sequence from exon 2 to exon 5 was digested with 4 U Maell (Boehringer Mannheim, Germany) under the same conditions. The fragments were visualized by ethidium bromide staining after run on an 8% PAGE.
- PCR products were directly double-stranded sequenced with the Thermo Sequenase cycle sequencing kit containing 7-deaza-dGTP. The reaction was performed according to the manufacture's recommendations (Amersham, Germany). The sequencing primers were 5'-labelled with IR-800 fluorescent dye. The products were run under denaturing conditions on a Li-COR DNA automatic sequencer 4200.
- the missense mutation results in an amino acid exchange from valine to phenylalanine at position 110 of the mutant growth hormone (VI 10F GH).
- the alignment of GH sequences revealed that Val 110 is highly conserved in mammalian and also in several non-mammalian GH ( Figure 5).
- Table 1 Clinical characteristics of 12 children with IGHD II at diagnosis.
- Quantitative values are given as median and range.
- the SDscores were taken from Prader et al. (22). For better comparison of the genotype-phenotype-relation, the clinical data from the children with GH-1 splice site mutations (Families 1, 2, 4 and 5) and from the children affected by the GH-1 missense mutation (Family 3) are shown separately. The age at diagnosis and the degree of short stature were very variable in members of the same family as illustrated in Figure 6. Overall, children with GH-1 splice site mutations showed a tendency to an earlier onset and more severe degree of growth failure in comparison to the children with the GH-1 missense mutation (Table 1 and Figure 6). Only two of the 12 affected children (5.1 and 7.1 years old) were overweight with a BMI SDscore of 2.2 and 3.3. The bone age was retarded in median by 1.6 years (range 0.5 to 3.6). The IGF-I and IGFBP3 levels were pathologically low in all affected children (Table 2).
- Table 2 Serum levels of the GH dependent factors at diagnosis. Values are given as median and range.
- IGF-1 ⁇ g/L
- IGFBP3 ⁇ g/L
- the 5 affected adults with GH-1 splice site mutations (4 females) had short stature -3.6 (-2.7 to -4.2), centripetal obesity, muscular hypotrophy, but normal fertility.
- the IGF-I serum levels were severely reduced (Table 2).
- the mother with VI 10F GH had short normal stature (-1.8 SDS), but also centripetal obesity and muscular hypotrophy.
- Her seven pregnancies were reportedly uneventful.
- the present inventors report for the first time the VI 10F mutation of GH-1. Its genetic basis is a C to T transition in a CpG dinucleotide which is a general hotspot for mutations in vertebrate genomes (25). This mutation changes a valine which is completely conserved in mammalians, and in some amphibians and birds, to phenylalanine. Valine is located next to the ⁇ -terminal beginning of the third alpha-helix and integrated in the closely packed core of the four- ⁇ -helix-bundle of GH (26). The more bulky phenylalanine at this position is very likely to interfere with the normal folding of GH.
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- Health & Medical Sciences (AREA)
- Chemical & Material Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Organic Chemistry (AREA)
- Proteomics, Peptides & Aminoacids (AREA)
- Genetics & Genomics (AREA)
- Zoology (AREA)
- Molecular Biology (AREA)
- Analytical Chemistry (AREA)
- General Health & Medical Sciences (AREA)
- Biochemistry (AREA)
- Wood Science & Technology (AREA)
- Biophysics (AREA)
- Engineering & Computer Science (AREA)
- Endocrinology (AREA)
- Gastroenterology & Hepatology (AREA)
- Pathology (AREA)
- Physics & Mathematics (AREA)
- Toxicology (AREA)
- Biotechnology (AREA)
- Immunology (AREA)
- Microbiology (AREA)
- Medicinal Chemistry (AREA)
- Bioinformatics & Cheminformatics (AREA)
- General Engineering & Computer Science (AREA)
- Measuring Or Testing Involving Enzymes Or Micro-Organisms (AREA)
- Investigating Or Analysing Biological Materials (AREA)
Abstract
Description
Claims
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| SE0101532A SE0101532D0 (en) | 2001-05-02 | 2001-05-02 | Method and kit for diagnosing GH deficiency |
| SE0101532 | 2001-05-02 | ||
| PCT/SE2002/000840 WO2002088390A1 (en) | 2001-05-02 | 2002-04-30 | Method and kit for diagnosing gh deficiency |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP1383930A1 true EP1383930A1 (en) | 2004-01-28 |
Family
ID=20283956
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP02766719A Withdrawn EP1383930A1 (en) | 2001-05-02 | 2002-04-30 | Method and kit for diagnosing gh deficiency |
Country Status (6)
| Country | Link |
|---|---|
| EP (1) | EP1383930A1 (en) |
| JP (1) | JP2004527254A (en) |
| CA (1) | CA2441789A1 (en) |
| NZ (1) | NZ528045A (en) |
| SE (1) | SE0101532D0 (en) |
| WO (1) | WO2002088390A1 (en) |
Family Cites Families (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP3005668B2 (en) * | 1996-11-11 | 2000-01-31 | 農林水産省畜産試験場長 | Genotyping method |
-
2001
- 2001-05-02 SE SE0101532A patent/SE0101532D0/en unknown
-
2002
- 2002-04-30 CA CA002441789A patent/CA2441789A1/en not_active Abandoned
- 2002-04-30 WO PCT/SE2002/000840 patent/WO2002088390A1/en not_active Ceased
- 2002-04-30 EP EP02766719A patent/EP1383930A1/en not_active Withdrawn
- 2002-04-30 JP JP2002585669A patent/JP2004527254A/en active Pending
- 2002-04-30 NZ NZ528045A patent/NZ528045A/en unknown
Non-Patent Citations (1)
| Title |
|---|
| See references of WO02088390A1 * |
Also Published As
| Publication number | Publication date |
|---|---|
| NZ528045A (en) | 2006-03-31 |
| SE0101532D0 (en) | 2001-05-02 |
| CA2441789A1 (en) | 2002-11-07 |
| JP2004527254A (en) | 2004-09-09 |
| WO2002088390A1 (en) | 2002-11-07 |
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