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Genetic Regulation of Enoyl-CoA Hydratase Domain-Containing 3 in Adipose Tissue Determines Insulin Sensitivity in African Americans and Europeans

机译:脂肪组织中含有烯酰基-CoA水合酶结构域3的遗传调控决定了非洲裔美国人和欧洲人对胰岛素的敏感性

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摘要

Insulin resistance (IR) is a harbinger of type 2 diabetes (T2D) and partly determined by genetic factors. However, genetically regulated mechanisms of IR remain poorly understood. Using gene expression, genotype, and insulin sensitivity data from the African American Genetics of Metabolism and Expression (AAGMEx) cohort, we performed transcript-wide correlation and expression quantitative trait loci (eQTL) analyses to identify IR-correlated -regulated transcripts ( -eGenes) in adipose tissue. These IR-correlated -eGenes were tested in the European ancestry individuals in the Metabolic Syndrome in Men (METSIM) cohort for trans-ethnic replication. Comparison of Matsuda index–correlated transcripts in AAGMEx with the METSIM study identified significant correlation of 3,849 transcripts, with concordant direction of effect for 97.5% of the transcripts. -eQTL for 587 Matsuda index–correlated genes were identified in both cohorts. Enoyl-CoA hydratase domain-containing 3 ( ) was the top-ranked Matsuda index–correlated -eGene. Expression levels of were positively correlated with Matsuda index, and regulated by -eQTL, rs34844369 being the top -eSNP in AAGMEx. Silencing of in adipocytes significantly reduced insulin-stimulated glucose uptake and Akt Ser phosphorylation. RNA sequencing analysis identified 691 differentially expressed genes in -knockdown adipocytes, which were enriched in γ-linolenate biosynthesis, and known IR genes. Thus, our studies elucidated genetic regulatory mechanisms of IR and identified genes and pathways in adipose tissue that are mechanistically involved in IR.
机译:胰岛素抵抗(IR)是2型糖尿病(T2D)的预兆,部分取决于遗传因素。但是,IR的遗传调控机制仍然知之甚少。使用来自非裔美国人代谢和表达遗传学(AAGMEx)队列的基因表达,基因型和胰岛素敏感性数据,我们进行了全转录本相关性和表达定量性状基因座(eQTL)分析,以鉴定与IR相关的转录本(-eGenes )在脂肪组织中。这些IR相关的-eGenes在欧洲血统的男性代谢综合征(METSIM)队列中进行了跨种族复制测试。 AAGMEx中松田指数相关转录本与METSIM研究的比较发现3,849个转录本具有显着相关性,而97.5%的转录本具有一致的作用方向。在两个队列中均鉴定了587个与松田指数相关的基因的-eQTL。含Enoyl-CoA水合酶结构域3()是与松田指数相关的-eGene。的表达水平与松田指数呈正相关,并受-eQTL调控,rs34844369是AAGMEx中的最高-eSNP。脂肪细胞中的沉默显着降低了胰岛素刺激的葡萄糖摄取和Akt Ser磷酸化。 RNA测序分析确定了在敲低脂肪细胞中的691个差异表达基因,这些基因富含γ-亚麻酸的生物合成和已知的IR基因。因此,我们的研究阐明了IR的遗传调控机制,并确定了在脂肪组织中机械参与IR的基因和途径。

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