Linkage disequilibrium mapping of the replicated type 2 diabetes linkage signal on chromosome 1q.

OBJECTIVE: Linkage of the chromosome 1q21-25 region to type 2 diabetes has been demonstrated in multiple ethnic groups. We performed common variant fine-mapping across a 23-Mb interval in a multiethnic sample to search for variants responsible for this linkage signal. RESEARCH DESIGN AND METHODS: In...

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Main Authors: Prokopenko, I, Zeggini, E, Hanson, R, Mitchell, B, Rayner, N, Akan, P, Baier, L, Das, S, Elliott, K, Fu, M, Frayling, T, Groves, C, Gwilliam, R, Scott, L, Voight, B, Hattersley, A, Hu, C, Morris, A, Ng, M, Palmer, C, Tello-Ruiz, M, Vaxillaire, M, Wang, C, Stein, L, Chan, J, Jia, W, Froguel, P, Elbein, S, Deloukas, P, Bogardus, C, Shuldiner, A, McCarthy, M
Format: Journal article
Language:English
Published: 2009
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author Prokopenko, I
Zeggini, E
Hanson, R
Mitchell, B
Rayner, N
Akan, P
Baier, L
Das, S
Elliott, K
Fu, M
Frayling, T
Groves, C
Gwilliam, R
Scott, L
Voight, B
Hattersley, A
Hu, C
Morris, A
Ng, M
Palmer, C
Tello-Ruiz, M
Vaxillaire, M
Wang, C
Stein, L
Chan, J
Jia, W
Froguel, P
Elbein, S
Deloukas, P
Bogardus, C
Shuldiner, A
McCarthy, M
author_facet Prokopenko, I
Zeggini, E
Hanson, R
Mitchell, B
Rayner, N
Akan, P
Baier, L
Das, S
Elliott, K
Fu, M
Frayling, T
Groves, C
Gwilliam, R
Scott, L
Voight, B
Hattersley, A
Hu, C
Morris, A
Ng, M
Palmer, C
Tello-Ruiz, M
Vaxillaire, M
Wang, C
Stein, L
Chan, J
Jia, W
Froguel, P
Elbein, S
Deloukas, P
Bogardus, C
Shuldiner, A
McCarthy, M
author_sort Prokopenko, I
collection OXFORD
description OBJECTIVE: Linkage of the chromosome 1q21-25 region to type 2 diabetes has been demonstrated in multiple ethnic groups. We performed common variant fine-mapping across a 23-Mb interval in a multiethnic sample to search for variants responsible for this linkage signal. RESEARCH DESIGN AND METHODS: In all, 5,290 single nucleotide polymorphisms (SNPs) were successfully genotyped in 3,179 type 2 diabetes case and control subjects from eight populations with evidence of 1q linkage. Samples were ascertained using strategies designed to enhance power to detect variants causal for 1q linkage. After imputation, we estimate approximately 80% coverage of common variation across the region (r (2) > 0.8, Europeans). Association signals of interest were evaluated through in silico replication and de novo genotyping in approximately 8,500 case subjects and 12,400 control subjects. RESULTS: Association mapping of the 23-Mb region identified two strong signals, both of which were restricted to the subset of European-descent samples. The first mapped to the NOS1AP (CAPON) gene region (lead SNP: rs7538490, odds ratio 1.38 [95% CI 1.21-1.57], P = 1.4 x 10(-6), in 999 case subjects and 1,190 control subjects); the second mapped within an extensive region of linkage disequilibrium that includes the ASH1L and PKLR genes (lead SNP: rs11264371, odds ratio 1.48 [1.18-1.76], P = 1.0 x 10(-5), under a dominant model). However, there was no evidence for association at either signal on replication, and, across all data (>24,000 subjects), there was no indication that these variants were causally related to type 2 diabetes status. CONCLUSIONS: Detailed fine-mapping of the 23-Mb region of replicated linkage has failed to identify common variant signals contributing to the observed signal. Future studies should focus on identification of causal alleles of lower frequency and higher penetrance.
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spelling oxford-uuid:be0ab733-563e-4dfb-808a-0b823b164af12022-03-27T05:36:30ZLinkage disequilibrium mapping of the replicated type 2 diabetes linkage signal on chromosome 1q.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:be0ab733-563e-4dfb-808a-0b823b164af1EnglishSymplectic Elements at Oxford2009Prokopenko, IZeggini, EHanson, RMitchell, BRayner, NAkan, PBaier, LDas, SElliott, KFu, MFrayling, TGroves, CGwilliam, RScott, LVoight, BHattersley, AHu, CMorris, ANg, MPalmer, CTello-Ruiz, MVaxillaire, MWang, CStein, LChan, JJia, WFroguel, PElbein, SDeloukas, PBogardus, CShuldiner, AMcCarthy, MOBJECTIVE: Linkage of the chromosome 1q21-25 region to type 2 diabetes has been demonstrated in multiple ethnic groups. We performed common variant fine-mapping across a 23-Mb interval in a multiethnic sample to search for variants responsible for this linkage signal. RESEARCH DESIGN AND METHODS: In all, 5,290 single nucleotide polymorphisms (SNPs) were successfully genotyped in 3,179 type 2 diabetes case and control subjects from eight populations with evidence of 1q linkage. Samples were ascertained using strategies designed to enhance power to detect variants causal for 1q linkage. After imputation, we estimate approximately 80% coverage of common variation across the region (r (2) > 0.8, Europeans). Association signals of interest were evaluated through in silico replication and de novo genotyping in approximately 8,500 case subjects and 12,400 control subjects. RESULTS: Association mapping of the 23-Mb region identified two strong signals, both of which were restricted to the subset of European-descent samples. The first mapped to the NOS1AP (CAPON) gene region (lead SNP: rs7538490, odds ratio 1.38 [95% CI 1.21-1.57], P = 1.4 x 10(-6), in 999 case subjects and 1,190 control subjects); the second mapped within an extensive region of linkage disequilibrium that includes the ASH1L and PKLR genes (lead SNP: rs11264371, odds ratio 1.48 [1.18-1.76], P = 1.0 x 10(-5), under a dominant model). However, there was no evidence for association at either signal on replication, and, across all data (>24,000 subjects), there was no indication that these variants were causally related to type 2 diabetes status. CONCLUSIONS: Detailed fine-mapping of the 23-Mb region of replicated linkage has failed to identify common variant signals contributing to the observed signal. Future studies should focus on identification of causal alleles of lower frequency and higher penetrance.
spellingShingle Prokopenko, I
Zeggini, E
Hanson, R
Mitchell, B
Rayner, N
Akan, P
Baier, L
Das, S
Elliott, K
Fu, M
Frayling, T
Groves, C
Gwilliam, R
Scott, L
Voight, B
Hattersley, A
Hu, C
Morris, A
Ng, M
Palmer, C
Tello-Ruiz, M
Vaxillaire, M
Wang, C
Stein, L
Chan, J
Jia, W
Froguel, P
Elbein, S
Deloukas, P
Bogardus, C
Shuldiner, A
McCarthy, M
Linkage disequilibrium mapping of the replicated type 2 diabetes linkage signal on chromosome 1q.
title Linkage disequilibrium mapping of the replicated type 2 diabetes linkage signal on chromosome 1q.
title_full Linkage disequilibrium mapping of the replicated type 2 diabetes linkage signal on chromosome 1q.
title_fullStr Linkage disequilibrium mapping of the replicated type 2 diabetes linkage signal on chromosome 1q.
title_full_unstemmed Linkage disequilibrium mapping of the replicated type 2 diabetes linkage signal on chromosome 1q.
title_short Linkage disequilibrium mapping of the replicated type 2 diabetes linkage signal on chromosome 1q.
title_sort linkage disequilibrium mapping of the replicated type 2 diabetes linkage signal on chromosome 1q
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