Impact of nine common type 2 diabetes risk polymorphisms in Asian Indian Sikhs: <it>PPARG2 (Pro12Ala)</it>, <it>IGF2BP2</it>, <it>TCF7L2 </it>and<it> FTO </it>variants confer a significant risk

<p>Abstract</p> <p>Background</p> <p>Recent genome-wide association (GWA) studies have identified several unsuspected genes associated with type 2 diabetes (T2D) with previously unknown functions. In this investigation, we have examined the role of 9 most significant SN...

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Main Authors: Mehra Narinder K, Wander Gurpreet S, Ralhan Sarju K, Singh Jairup, Han Shizhong, Ortega Lyda, Sanghera Dharambir K, Mulvihill John J, Ferrell Robert E, Nath Swapan K, Kamboh Mohammed I
Format: Article
Language:English
Published: BMC 2008-07-01
Series:BMC Medical Genetics
Online Access:http://www.biomedcentral.com/1471-2350/9/59
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spelling doaj-a852c08612dc47178914b653774631e12021-04-02T09:35:29ZengBMCBMC Medical Genetics1471-23502008-07-01915910.1186/1471-2350-9-59Impact of nine common type 2 diabetes risk polymorphisms in Asian Indian Sikhs: <it>PPARG2 (Pro12Ala)</it>, <it>IGF2BP2</it>, <it>TCF7L2 </it>and<it> FTO </it>variants confer a significant riskMehra Narinder KWander Gurpreet SRalhan Sarju KSingh JairupHan ShizhongOrtega LydaSanghera Dharambir KMulvihill John JFerrell Robert ENath Swapan KKamboh Mohammed I<p>Abstract</p> <p>Background</p> <p>Recent genome-wide association (GWA) studies have identified several unsuspected genes associated with type 2 diabetes (T2D) with previously unknown functions. In this investigation, we have examined the role of 9 most significant SNPs reported in GWA studies: [peroxisome proliferator-activated receptor gamma 2 (<it>PPARG2</it>; rs 1801282); insulin-like growth factor two binding protein 2 (<it>IGF2BP2</it>; rs 4402960); cyclin-dependent kinase 5, a regulatory subunit-associated protein1-like 1 (<it>CDK5</it>; rs7754840); a zinc transporter and member of solute carrier family 30 (<it>SLC30A8</it>; rs13266634); a variant found near cyclin-dependent kinase inhibitor 2A (<it>CDKN2A</it>; rs10811661); hematopoietically expressed homeobox (<it>HHEX</it>; rs 1111875); transcription factor-7-like 2 (<it>TCF7L2</it>; rs 10885409); potassium inwardly rectifying channel subfamily J member 11(<it>KCNJ11</it>; rs 5219); and fat mass obesity-associated gene (<it>FTO</it>; rs 9939609)].</p> <p>Methods</p> <p>We genotyped these SNPs in a case-control sample of 918 individuals consisting of 532 T2D cases and 386 normal glucose tolerant (NGT) subjects of an Asian Sikh community from North India. We tested the association between T2D and each SNP using unconditional logistic regression before and after adjusting for age, gender, and other covariates. We also examined the impact of these variants on body mass index (BMI), waist to hip ratio (WHR), fasting insulin, and glucose and lipid levels using multiple linear regression analysis.</p> <p>Results</p> <p>Four of the nine SNPs revealed a significant association with T2D; <it>PPARG2 </it>(Pro12Ala) [odds ratio (OR) 0.12; 95% confidence interval (CI) (0.03–0.52); p = 0.005], <it>IGF2BP2 </it>[OR 1.37; 95% CI (1.04–1.82); p = 0.027], <it>TCF7L2 </it>[OR 1.64; 95% CI (1.20–2.24); p = 0.001] and <it>FTO </it>[OR 1.46; 95% CI (1.11–1.93); p = 0.007] after adjusting for age, sex and BMI. Multiple linear regression analysis revealed significant association of two of nine investigated loci with diabetes-related quantitative traits. The 'C' (risk) allele of <it>CDK5 </it>(rs 7754840) was significantly associated with decreased HDL-cholesterol levels in both NGT (p = 0.005) and combined (NGT and T2D) (0.005) groups. The less common 'C' (risk) allele of <it>TCF7L2 </it>(rs 10885409) was associated with increased LDL-cholesterol (p = 0.010) in NGT and total and LDL-cholesterol levels (p = 0.008; p = 0.003, respectively) in combined cohort.</p> <p>Conclusion</p> <p>To our knowledge, this is first study reporting the role of some recently emerged loci with T2D in a high risk population of Asian Indian origin. Further investigations are warranted to understand the pathway-based functional implications of these important loci in T2D pathophysiology in different ethnicities.</p> http://www.biomedcentral.com/1471-2350/9/59
collection DOAJ
language English
format Article
sources DOAJ
author Mehra Narinder K
Wander Gurpreet S
Ralhan Sarju K
Singh Jairup
Han Shizhong
Ortega Lyda
Sanghera Dharambir K
Mulvihill John J
Ferrell Robert E
Nath Swapan K
Kamboh Mohammed I
spellingShingle Mehra Narinder K
Wander Gurpreet S
Ralhan Sarju K
Singh Jairup
Han Shizhong
Ortega Lyda
Sanghera Dharambir K
Mulvihill John J
Ferrell Robert E
Nath Swapan K
Kamboh Mohammed I
Impact of nine common type 2 diabetes risk polymorphisms in Asian Indian Sikhs: <it>PPARG2 (Pro12Ala)</it>, <it>IGF2BP2</it>, <it>TCF7L2 </it>and<it> FTO </it>variants confer a significant risk
BMC Medical Genetics
author_facet Mehra Narinder K
Wander Gurpreet S
Ralhan Sarju K
Singh Jairup
Han Shizhong
Ortega Lyda
Sanghera Dharambir K
Mulvihill John J
Ferrell Robert E
Nath Swapan K
Kamboh Mohammed I
author_sort Mehra Narinder K
title Impact of nine common type 2 diabetes risk polymorphisms in Asian Indian Sikhs: <it>PPARG2 (Pro12Ala)</it>, <it>IGF2BP2</it>, <it>TCF7L2 </it>and<it> FTO </it>variants confer a significant risk
title_short Impact of nine common type 2 diabetes risk polymorphisms in Asian Indian Sikhs: <it>PPARG2 (Pro12Ala)</it>, <it>IGF2BP2</it>, <it>TCF7L2 </it>and<it> FTO </it>variants confer a significant risk
title_full Impact of nine common type 2 diabetes risk polymorphisms in Asian Indian Sikhs: <it>PPARG2 (Pro12Ala)</it>, <it>IGF2BP2</it>, <it>TCF7L2 </it>and<it> FTO </it>variants confer a significant risk
title_fullStr Impact of nine common type 2 diabetes risk polymorphisms in Asian Indian Sikhs: <it>PPARG2 (Pro12Ala)</it>, <it>IGF2BP2</it>, <it>TCF7L2 </it>and<it> FTO </it>variants confer a significant risk
title_full_unstemmed Impact of nine common type 2 diabetes risk polymorphisms in Asian Indian Sikhs: <it>PPARG2 (Pro12Ala)</it>, <it>IGF2BP2</it>, <it>TCF7L2 </it>and<it> FTO </it>variants confer a significant risk
title_sort impact of nine common type 2 diabetes risk polymorphisms in asian indian sikhs: <it>pparg2 (pro12ala)</it>, <it>igf2bp2</it>, <it>tcf7l2 </it>and<it> fto </it>variants confer a significant risk
publisher BMC
series BMC Medical Genetics
issn 1471-2350
publishDate 2008-07-01
description <p>Abstract</p> <p>Background</p> <p>Recent genome-wide association (GWA) studies have identified several unsuspected genes associated with type 2 diabetes (T2D) with previously unknown functions. In this investigation, we have examined the role of 9 most significant SNPs reported in GWA studies: [peroxisome proliferator-activated receptor gamma 2 (<it>PPARG2</it>; rs 1801282); insulin-like growth factor two binding protein 2 (<it>IGF2BP2</it>; rs 4402960); cyclin-dependent kinase 5, a regulatory subunit-associated protein1-like 1 (<it>CDK5</it>; rs7754840); a zinc transporter and member of solute carrier family 30 (<it>SLC30A8</it>; rs13266634); a variant found near cyclin-dependent kinase inhibitor 2A (<it>CDKN2A</it>; rs10811661); hematopoietically expressed homeobox (<it>HHEX</it>; rs 1111875); transcription factor-7-like 2 (<it>TCF7L2</it>; rs 10885409); potassium inwardly rectifying channel subfamily J member 11(<it>KCNJ11</it>; rs 5219); and fat mass obesity-associated gene (<it>FTO</it>; rs 9939609)].</p> <p>Methods</p> <p>We genotyped these SNPs in a case-control sample of 918 individuals consisting of 532 T2D cases and 386 normal glucose tolerant (NGT) subjects of an Asian Sikh community from North India. We tested the association between T2D and each SNP using unconditional logistic regression before and after adjusting for age, gender, and other covariates. We also examined the impact of these variants on body mass index (BMI), waist to hip ratio (WHR), fasting insulin, and glucose and lipid levels using multiple linear regression analysis.</p> <p>Results</p> <p>Four of the nine SNPs revealed a significant association with T2D; <it>PPARG2 </it>(Pro12Ala) [odds ratio (OR) 0.12; 95% confidence interval (CI) (0.03–0.52); p = 0.005], <it>IGF2BP2 </it>[OR 1.37; 95% CI (1.04–1.82); p = 0.027], <it>TCF7L2 </it>[OR 1.64; 95% CI (1.20–2.24); p = 0.001] and <it>FTO </it>[OR 1.46; 95% CI (1.11–1.93); p = 0.007] after adjusting for age, sex and BMI. Multiple linear regression analysis revealed significant association of two of nine investigated loci with diabetes-related quantitative traits. The 'C' (risk) allele of <it>CDK5 </it>(rs 7754840) was significantly associated with decreased HDL-cholesterol levels in both NGT (p = 0.005) and combined (NGT and T2D) (0.005) groups. The less common 'C' (risk) allele of <it>TCF7L2 </it>(rs 10885409) was associated with increased LDL-cholesterol (p = 0.010) in NGT and total and LDL-cholesterol levels (p = 0.008; p = 0.003, respectively) in combined cohort.</p> <p>Conclusion</p> <p>To our knowledge, this is first study reporting the role of some recently emerged loci with T2D in a high risk population of Asian Indian origin. Further investigations are warranted to understand the pathway-based functional implications of these important loci in T2D pathophysiology in different ethnicities.</p>
url http://www.biomedcentral.com/1471-2350/9/59
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