Cargando…
Mutation screen in the GWAS derived obesity gene SH2B1 including functional analyses of detected variants
BACKGROUND: The SH2B1 gene (Src-homology 2B adaptor protein 1 gene) is a solid candidate gene for obesity. Large scale GWAS studies depicted markers in the vicinity of the gene; animal models suggest a potential relevance for human body weight regulation. METHODS: We performed a mutation screen for...
Autores principales: | , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
BioMed Central
2012
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3544595/ https://www.ncbi.nlm.nih.gov/pubmed/23270367 http://dx.doi.org/10.1186/1755-8794-5-65 |
_version_ | 1782255803270430720 |
---|---|
author | Volckmar, Anna-Lena Bolze, Florian Jarick, Ivonne Knoll, Nadja Scherag, André Reinehr, Thomas Illig, Thomas Grallert, Harald Wichmann, Heinz-Erich Wiegand, Susanna Biebermann, Heike Krude, Heiko Fischer-Posovszky, Pamela Rief, Winfried Wabitsch, Martin Klingenspor, Martin Hebebrand, Johannes Hinney, Anke |
author_facet | Volckmar, Anna-Lena Bolze, Florian Jarick, Ivonne Knoll, Nadja Scherag, André Reinehr, Thomas Illig, Thomas Grallert, Harald Wichmann, Heinz-Erich Wiegand, Susanna Biebermann, Heike Krude, Heiko Fischer-Posovszky, Pamela Rief, Winfried Wabitsch, Martin Klingenspor, Martin Hebebrand, Johannes Hinney, Anke |
author_sort | Volckmar, Anna-Lena |
collection | PubMed |
description | BACKGROUND: The SH2B1 gene (Src-homology 2B adaptor protein 1 gene) is a solid candidate gene for obesity. Large scale GWAS studies depicted markers in the vicinity of the gene; animal models suggest a potential relevance for human body weight regulation. METHODS: We performed a mutation screen for variants in the SH2B1 coding sequence in 95 extremely obese children and adolescents. Detected variants were genotyped in independent childhood and adult study groups (up to 11,406 obese or overweight individuals and 4,568 controls). Functional implications on STAT3 mediated leptin signalling of the detected variants were analyzed in vitro. RESULTS: We identified two new rare mutations and five known SNPs (rs147094247, rs7498665, rs60604881, rs62037368 and rs62037369) in SH2B1. Mutation g.9483C/T leads to a non-synonymous, non-conservative exchange in the beta (βThr656Ile) and gamma (γPro674Ser) splice variants of SH2B1. It was additionally detected in two of 11,206 (extremely) obese or overweight children, adolescents and adults, but not in 4,506 population-based normal-weight or lean controls. The non-coding mutation g.10182C/A at the 3’ end of SH2B1 was only detected in three obese individuals. For the non-synonymous SNP rs7498665 (Thr484Ala) we observed nominal over-transmission of the previously described risk allele in 705 obesity trios (nominal p = 0.009, OR = 1.23) and an increased frequency of the same allele in 359 cases compared to 429 controls (nominal p = 0.042, OR = 1.23). The obesity risk-alleles at Thr484Ala and βThr656Ile/γPro674Ser had no effect on STAT3 mediated leptin receptor signalling in splice variants β and γ. CONCLUSION: The rare coding mutation βThr656Ile/γPro674Ser (g.9483C/T) in SH2B1 was exclusively detected in overweight or obese individuals. Functional analyzes did not reveal impairments in leptin signalling for the mutated SH2B1. |
format | Online Article Text |
id | pubmed-3544595 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2012 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-35445952013-01-16 Mutation screen in the GWAS derived obesity gene SH2B1 including functional analyses of detected variants Volckmar, Anna-Lena Bolze, Florian Jarick, Ivonne Knoll, Nadja Scherag, André Reinehr, Thomas Illig, Thomas Grallert, Harald Wichmann, Heinz-Erich Wiegand, Susanna Biebermann, Heike Krude, Heiko Fischer-Posovszky, Pamela Rief, Winfried Wabitsch, Martin Klingenspor, Martin Hebebrand, Johannes Hinney, Anke BMC Med Genomics Research Article BACKGROUND: The SH2B1 gene (Src-homology 2B adaptor protein 1 gene) is a solid candidate gene for obesity. Large scale GWAS studies depicted markers in the vicinity of the gene; animal models suggest a potential relevance for human body weight regulation. METHODS: We performed a mutation screen for variants in the SH2B1 coding sequence in 95 extremely obese children and adolescents. Detected variants were genotyped in independent childhood and adult study groups (up to 11,406 obese or overweight individuals and 4,568 controls). Functional implications on STAT3 mediated leptin signalling of the detected variants were analyzed in vitro. RESULTS: We identified two new rare mutations and five known SNPs (rs147094247, rs7498665, rs60604881, rs62037368 and rs62037369) in SH2B1. Mutation g.9483C/T leads to a non-synonymous, non-conservative exchange in the beta (βThr656Ile) and gamma (γPro674Ser) splice variants of SH2B1. It was additionally detected in two of 11,206 (extremely) obese or overweight children, adolescents and adults, but not in 4,506 population-based normal-weight or lean controls. The non-coding mutation g.10182C/A at the 3’ end of SH2B1 was only detected in three obese individuals. For the non-synonymous SNP rs7498665 (Thr484Ala) we observed nominal over-transmission of the previously described risk allele in 705 obesity trios (nominal p = 0.009, OR = 1.23) and an increased frequency of the same allele in 359 cases compared to 429 controls (nominal p = 0.042, OR = 1.23). The obesity risk-alleles at Thr484Ala and βThr656Ile/γPro674Ser had no effect on STAT3 mediated leptin receptor signalling in splice variants β and γ. CONCLUSION: The rare coding mutation βThr656Ile/γPro674Ser (g.9483C/T) in SH2B1 was exclusively detected in overweight or obese individuals. Functional analyzes did not reveal impairments in leptin signalling for the mutated SH2B1. BioMed Central 2012-12-27 /pmc/articles/PMC3544595/ /pubmed/23270367 http://dx.doi.org/10.1186/1755-8794-5-65 Text en Copyright ©2012 Volckmar et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Article Volckmar, Anna-Lena Bolze, Florian Jarick, Ivonne Knoll, Nadja Scherag, André Reinehr, Thomas Illig, Thomas Grallert, Harald Wichmann, Heinz-Erich Wiegand, Susanna Biebermann, Heike Krude, Heiko Fischer-Posovszky, Pamela Rief, Winfried Wabitsch, Martin Klingenspor, Martin Hebebrand, Johannes Hinney, Anke Mutation screen in the GWAS derived obesity gene SH2B1 including functional analyses of detected variants |
title | Mutation screen in the GWAS derived obesity gene SH2B1 including functional analyses of detected variants |
title_full | Mutation screen in the GWAS derived obesity gene SH2B1 including functional analyses of detected variants |
title_fullStr | Mutation screen in the GWAS derived obesity gene SH2B1 including functional analyses of detected variants |
title_full_unstemmed | Mutation screen in the GWAS derived obesity gene SH2B1 including functional analyses of detected variants |
title_short | Mutation screen in the GWAS derived obesity gene SH2B1 including functional analyses of detected variants |
title_sort | mutation screen in the gwas derived obesity gene sh2b1 including functional analyses of detected variants |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3544595/ https://www.ncbi.nlm.nih.gov/pubmed/23270367 http://dx.doi.org/10.1186/1755-8794-5-65 |
work_keys_str_mv | AT volckmarannalena mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT bolzeflorian mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT jarickivonne mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT knollnadja mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT scheragandre mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT reinehrthomas mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT illigthomas mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT grallertharald mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT wichmannheinzerich mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT wiegandsusanna mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT biebermannheike mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT krudeheiko mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT fischerposovszkypamela mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT riefwinfried mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT wabitschmartin mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT klingenspormartin mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT hebebrandjohannes mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants AT hinneyanke mutationscreeninthegwasderivedobesitygenesh2b1includingfunctionalanalysesofdetectedvariants |