Polymorphisms near <it>EXOC4 </it>and <it>LRGUK </it>on chromosome 7q32 are associated with Type 2 Diabetes and fasting glucose; The NHLBI Family Heart Study

<p>Abstract</p> <p>Background</p> <p>The chromosome 7q32 region is linked to metabolic syndrome and obesity related traits in the Family Heart Study. As part of a fine mapping study of the region, we evaluated the relationship of polymorphisms to fasting glucose levels...

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Main Authors: Tobin Jennifer E, Latourelle Jeanne C, Nagle Michael W, Williamson Sally L, Wilk Jemma B, Laramie Jason M, Province Michael A, Borecki Ingrid B, Myers Richard H
Format: Article
Language:English
Published: BMC 2008-05-01
Series:BMC Medical Genetics
Online Access:http://www.biomedcentral.com/1471-2350/9/46
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spelling doaj-4e510c538acf4885a949795fbdf8cedd2021-04-02T17:26:15ZengBMCBMC Medical Genetics1471-23502008-05-01914610.1186/1471-2350-9-46Polymorphisms near <it>EXOC4 </it>and <it>LRGUK </it>on chromosome 7q32 are associated with Type 2 Diabetes and fasting glucose; The NHLBI Family Heart StudyTobin Jennifer ELatourelle Jeanne CNagle Michael WWilliamson Sally LWilk Jemma BLaramie Jason MProvince Michael ABorecki Ingrid BMyers Richard H<p>Abstract</p> <p>Background</p> <p>The chromosome 7q32 region is linked to metabolic syndrome and obesity related traits in the Family Heart Study. As part of a fine mapping study of the region, we evaluated the relationship of polymorphisms to fasting glucose levels and Type 2 diabetes.</p> <p>Methods</p> <p>Thirty-nine HapMap defined tag SNPs in a 1.08 Mb region and a novel deletion polymorphism were genotyped in 2,603 participants of the NHLBI Family Heart Study (FHS). Regression modeling, adjusting for BMI, age, sex, smoking and the TCF7L2 polymorphism, was used to evaluate the association of these polymorphisms with T2D and fasting glucoses levels.</p> <p>Results</p> <p>The deletion polymorphism confers a protective effect for T2D, with homozygous deletion carriers having a 53% reduced risk compared to non-deleted carriers. Among non-diabetics, the deletion was significantly associated with lower fasting glucose levels in men (p = 0.038) but not women (p = 0.118). In addition, seven SNPs near the deletion were significantly associated (p < 0.01) to diabetes.</p> <p>Conclusion</p> <p>Chromosome 7q32 contains both SNPs and a deletion that were associated to T2D. Although the deletion region contains several islands of strongly conserved sequence, it is not known to contain a transcribed gene. The closest nearby gene, <it>EXOC4</it>, is involved in insulin-stimulated glucose transport and may be a candidate for this association. Further work is needed to determine if the deletion represents a functional variant or may be in linkage disequilibrium with a functional mutation influencing <it>EXOC4 </it>or another nearby gene.</p> http://www.biomedcentral.com/1471-2350/9/46
collection DOAJ
language English
format Article
sources DOAJ
author Tobin Jennifer E
Latourelle Jeanne C
Nagle Michael W
Williamson Sally L
Wilk Jemma B
Laramie Jason M
Province Michael A
Borecki Ingrid B
Myers Richard H
spellingShingle Tobin Jennifer E
Latourelle Jeanne C
Nagle Michael W
Williamson Sally L
Wilk Jemma B
Laramie Jason M
Province Michael A
Borecki Ingrid B
Myers Richard H
Polymorphisms near <it>EXOC4 </it>and <it>LRGUK </it>on chromosome 7q32 are associated with Type 2 Diabetes and fasting glucose; The NHLBI Family Heart Study
BMC Medical Genetics
author_facet Tobin Jennifer E
Latourelle Jeanne C
Nagle Michael W
Williamson Sally L
Wilk Jemma B
Laramie Jason M
Province Michael A
Borecki Ingrid B
Myers Richard H
author_sort Tobin Jennifer E
title Polymorphisms near <it>EXOC4 </it>and <it>LRGUK </it>on chromosome 7q32 are associated with Type 2 Diabetes and fasting glucose; The NHLBI Family Heart Study
title_short Polymorphisms near <it>EXOC4 </it>and <it>LRGUK </it>on chromosome 7q32 are associated with Type 2 Diabetes and fasting glucose; The NHLBI Family Heart Study
title_full Polymorphisms near <it>EXOC4 </it>and <it>LRGUK </it>on chromosome 7q32 are associated with Type 2 Diabetes and fasting glucose; The NHLBI Family Heart Study
title_fullStr Polymorphisms near <it>EXOC4 </it>and <it>LRGUK </it>on chromosome 7q32 are associated with Type 2 Diabetes and fasting glucose; The NHLBI Family Heart Study
title_full_unstemmed Polymorphisms near <it>EXOC4 </it>and <it>LRGUK </it>on chromosome 7q32 are associated with Type 2 Diabetes and fasting glucose; The NHLBI Family Heart Study
title_sort polymorphisms near <it>exoc4 </it>and <it>lrguk </it>on chromosome 7q32 are associated with type 2 diabetes and fasting glucose; the nhlbi family heart study
publisher BMC
series BMC Medical Genetics
issn 1471-2350
publishDate 2008-05-01
description <p>Abstract</p> <p>Background</p> <p>The chromosome 7q32 region is linked to metabolic syndrome and obesity related traits in the Family Heart Study. As part of a fine mapping study of the region, we evaluated the relationship of polymorphisms to fasting glucose levels and Type 2 diabetes.</p> <p>Methods</p> <p>Thirty-nine HapMap defined tag SNPs in a 1.08 Mb region and a novel deletion polymorphism were genotyped in 2,603 participants of the NHLBI Family Heart Study (FHS). Regression modeling, adjusting for BMI, age, sex, smoking and the TCF7L2 polymorphism, was used to evaluate the association of these polymorphisms with T2D and fasting glucoses levels.</p> <p>Results</p> <p>The deletion polymorphism confers a protective effect for T2D, with homozygous deletion carriers having a 53% reduced risk compared to non-deleted carriers. Among non-diabetics, the deletion was significantly associated with lower fasting glucose levels in men (p = 0.038) but not women (p = 0.118). In addition, seven SNPs near the deletion were significantly associated (p < 0.01) to diabetes.</p> <p>Conclusion</p> <p>Chromosome 7q32 contains both SNPs and a deletion that were associated to T2D. Although the deletion region contains several islands of strongly conserved sequence, it is not known to contain a transcribed gene. The closest nearby gene, <it>EXOC4</it>, is involved in insulin-stimulated glucose transport and may be a candidate for this association. Further work is needed to determine if the deletion represents a functional variant or may be in linkage disequilibrium with a functional mutation influencing <it>EXOC4 </it>or another nearby gene.</p>
url http://www.biomedcentral.com/1471-2350/9/46
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