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PMID: 27193597 已发表 · ppublish 英语

Mapping adipose and muscle tissue expression quantitative trait loci in African Americans to identify genes for type 2 diabetes and obesity.

Human genetics ·第 135 卷 ·第 8 期 ·0000-00-00

Sajuthi Satria P, Sharma Neeraj K, Chou Jeff W, Palmer Nicholette D, McWilliams David R, Beal John, Comeau Mary E, Ma Lijun, Calles-Escandon Jorge, Demons Jamehl, Rogers Samantha, Cherry Kristina, Menon Lata, Kouba Ethel, Davis Donna, Burris Marcie, Byerly Sara J, Ng Maggie C Y, Maruthur Nisa M, Patel Sanjay R, Bielak Lawrence F, Lange Leslie A, Guo Xiuqing, Sale Michèle M, Chan Kei Hang K, Monda Keri L, Chen Gary K, Taylor Kira, Palmer Cameron, Edwards Todd L, North Kari E, Haiman Christopher A, Bowden Donald W, Freedman Barry I, Langefeld Carl D, Das Swapan K

摘要

Relative to European Americans, type 2 diabetes (T2D) is more prevalent in African Americans (AAs). Genetic variation may modulate transcript abundance in insulin-responsive tissues and contribute to risk; yet, published studies identifying expression quantitative trait loci (eQTLs) in African ancestry populations are restricted to blood cells. This study aims to develop a map of genetically regulated transcripts expressed in tissues important for glucose homeostasis in AAs, critical for identifying the genetic etiology of T2D and related traits. Quantitative measures of adipose and muscle gene expression, and genotypic data were integrated in 260 non-diabetic AAs to identify expression regulatory variants. Their roles in genetic susceptibility to T2D, and related metabolic phenotypes, were evaluated by mining GWAS datasets. eQTL analysis identified 1971 and 2078 cis-eGenes in adipose and muscle, respectively. Cis-eQTLs for 885 transcripts including top cis-eGenes CHURC1, USMG5, and ERAP2 were identified in both tissues. 62.1 % of top cis-eSNPs were within ±50 kb of transcription start sites and cis-eGenes were enriched for mitochondrial transcripts. Mining GWAS databases revealed association of cis-eSNPs for more than 50 genes with T2D (e.g. PIK3C2A, RBMS1, UFSP1), gluco-metabolic phenotypes (e.g. INPP5E, SNX17, ERAP2, FN3KRP), and obesity (e.g. POMC, CPEB4). Integration of GWAS meta-analysis data from AA cohorts revealed the most significant association for cis-eSNPs of ATP5SL and MCCC1 genes, with T2D and BMI, respectively. This study developed the first comprehensive map of adipose and muscle tissue eQTLs in AAs (publically accessible at https://mdsetaa.phs.wakehealth.edu ) and identified genetically regulated transcripts for delineating genetic causes of T2D, and related metabolic phenotypes.

文献信息
期刊
Human genetics
期刊简称
Hum Genet
发表日期
0000-00-00
收录日期
2016-07-18
更新日期
2016-10-25
语言
英语
国家/地区
Germany
NLM ID
7613873
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