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Genetic Variants Associated With Quantitative Glucose Homeostasis Traits Translate to Type 2 Diabetes in Mexican Americans: The GUARDIAN (Genetics Underlying Diabetes in Hispanics) Consortium.

Authors :
Palmer, Nicholette D
Palmer, Nicholette D
Goodarzi, Mark O
Langefeld, Carl D
Wang, Nan
Guo, Xiuqing
Taylor, Kent D
Fingerlin, Tasha E
Norris, Jill M
Buchanan, Thomas A
Xiang, Anny H
Haritunians, Talin
Ziegler, Julie T
Williams, Adrienne H
Stefanovski, Darko
Cui, Jinrui
Mackay, Adrienne W
Henkin, Leora F
Bergman, Richard N
Gao, Xiaoyi
Gauderman, James
Varma, Rohit
Hanis, Craig L
Cox, Nancy J
Highland, Heather M
Below, Jennifer E
Williams, Amy L
Burtt, Noel P
Aguilar-Salinas, Carlos A
Huerta-Chagoya, Alicia
Gonzalez-Villalpando, Clicerio
Orozco, Lorena
Haiman, Christopher A
Tsai, Michael Y
Johnson, W Craig
Yao, Jie
Rasmussen-Torvik, Laura
Pankow, James
Snively, Beverly
Jackson, Rebecca D
Liu, Simin
Nadler, Jerry L
Kandeel, Fouad
Chen, Yii-Der I
Bowden, Donald W
Rich, Stephen S
Raffel, Leslie J
Rotter, Jerome I
Watanabe, Richard M
Wagenknecht, Lynne E
Palmer, Nicholette D
Palmer, Nicholette D
Goodarzi, Mark O
Langefeld, Carl D
Wang, Nan
Guo, Xiuqing
Taylor, Kent D
Fingerlin, Tasha E
Norris, Jill M
Buchanan, Thomas A
Xiang, Anny H
Haritunians, Talin
Ziegler, Julie T
Williams, Adrienne H
Stefanovski, Darko
Cui, Jinrui
Mackay, Adrienne W
Henkin, Leora F
Bergman, Richard N
Gao, Xiaoyi
Gauderman, James
Varma, Rohit
Hanis, Craig L
Cox, Nancy J
Highland, Heather M
Below, Jennifer E
Williams, Amy L
Burtt, Noel P
Aguilar-Salinas, Carlos A
Huerta-Chagoya, Alicia
Gonzalez-Villalpando, Clicerio
Orozco, Lorena
Haiman, Christopher A
Tsai, Michael Y
Johnson, W Craig
Yao, Jie
Rasmussen-Torvik, Laura
Pankow, James
Snively, Beverly
Jackson, Rebecca D
Liu, Simin
Nadler, Jerry L
Kandeel, Fouad
Chen, Yii-Der I
Bowden, Donald W
Rich, Stephen S
Raffel, Leslie J
Rotter, Jerome I
Watanabe, Richard M
Wagenknecht, Lynne E
Source :
Diabetes; vol 64, iss 5, 1853-1866; 0012-1797
Publication Year :
2015

Abstract

Insulin sensitivity, insulin secretion, insulin clearance, and glucose effectiveness exhibit strong genetic components, although few studies have examined their genetic architecture or influence on type 2 diabetes (T2D) risk. We hypothesized that loci affecting variation in these quantitative traits influence T2D. We completed a multicohort genome-wide association study to search for loci influencing T2D-related quantitative traits in 4,176 Mexican Americans. Quantitative traits were measured by the frequently sampled intravenous glucose tolerance test (four cohorts) or euglycemic clamp (three cohorts), and random-effects models were used to test the association between loci and quantitative traits, adjusting for age, sex, and admixture proportions (Discovery). Analysis revealed a significant (P < 5.00 × 10(-8)) association at 11q14.3 (MTNR1B) with acute insulin response. Loci with P < 0.0001 among the quantitative traits were examined for translation to T2D risk in 6,463 T2D case and 9,232 control subjects of Mexican ancestry (Translation). Nonparametric meta-analysis of the Discovery and Translation cohorts identified significant associations at 6p24 (SLC35B3/TFAP2A) with glucose effectiveness/T2D, 11p15 (KCNQ1) with disposition index/T2D, and 6p22 (CDKAL1) and 11q14 (MTNR1B) with acute insulin response/T2D. These results suggest that T2D and insulin secretion and sensitivity have both shared and distinct genetic factors, potentially delineating genomic components of these quantitative traits that drive the risk for T2D.

Details

Database :
OAIster
Journal :
Diabetes; vol 64, iss 5, 1853-1866; 0012-1797
Notes :
Diabetes vol 64, iss 5, 1853-1866 0012-1797
Publication Type :
Electronic Resource
Accession number :
edsoai.on1367439123
Document Type :
Electronic Resource