[No authors listed]
OBJECTIVES:In contrast to coronary heart disease (CHD), genetic variants that influence susceptibility to peripheral arterial disease remain largely unknown. BACKGROUND:We performed a two-stage genomic association study leveraging an electronic medical record (EMR) linked-biorepository to identify genetic variants that mediate susceptibility to was defined as a resting/post-exercise ankle-brachial index (ABI) â¤0.9 or â¥1.4 and/or history of lower extremity revascularization. Controls were patients without history of In Stage I we performed a genome-wide association analysis adjusting for age and sex, of 537, 872 SNPs in 1641 cases (66 ± 11 years, 64% men) and 1604 control subjects (61 ± 7 year, 60% men) of European ancestry. In Stage II we genotyped the top 48 SNPs that were associated with duanyu1563 in Stage I, in a replication cohort of 740 duanyu1563 cases (70 ± 11 year, 63% men) and 1051 controls (70 ± 12 year, 61% men). RESULTS:The SNP rs653178 in the ATXN2-SH2B3 locus was significantly associated with duanyu1563 in the discovery cohort (OR = 1.23; P = 5.59 à 10(-5)), in the replication cohort (OR = 1.22; 8.9 à 10(-4)) and in the combined cohort (OR = 1.22; P = 6.46 à 10(-7)). In the combined cohort this SNP remained associated with duanyu1563 after additional adjustment for cardiovascular risk factors including smoking (OR = 1.22; P = 2.15 à 10(-6)) and after excluding patients with ABI > 1.4 (OR = 1.24; P = 3.98 à 10(-7)). The SNP is in near-complete linkage disequilibrium (LD) (r (2) = 0.99) with a missense SNP (rs3184504) in SH2B3, a gene encoding an adapter protein that plays a key role in immune and inflammatory response pathways and vascular homeostasis. The SNP has pleiotropic effects and has been previously associated with multiple phenotypes including myocardial infarction. CONCLUSIONS:Our findings suggest that the ATXN2-SH2B3 locus influences susceptibility to
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