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Expression of mRNA transcripts encoding membrane transporters detected with whole transcriptome sequencing of human brain and liver

机译:人脑和肝脏全转录组测序检测编码膜转运蛋白的mRNA转录本的表达

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Background: Membrane transporters control the influx and efflux of endogenous and xenobiotic substrates, including nutrients and drugs, across cellular membranes. Objective: Whole transcriptome sequencing enables simultaneous analysis of overall and allele-specific mRNA expression, and the detection of multiple RNA isoforms. Methods: Here we characterize variation in RNA transcripts emanating from gene loci encoding transporters based on RNAseq data from 10 human brains (including cocaine overdose and normal brain tissues) and 12 normal livers. Results: mRNA expression was detected in 65% of transporter genes in either tissue, with many genes generating multiple mRNA transcripts. Single-nucleotide polymorphisms within transporters with previous evidence for pharmacogenomics impact were detected. We also identified noncoding RNAs in the vicinity of transporter genes with potential regulatory functions. Conclusion: The results obtained with RNAseq provide detailed information on transporter mRNA expression at the molecular level, affording new avenues for the study of membrane transport, with relevance to drug efficacy and toxicity.
机译:背景:膜转运蛋白控制着跨细胞膜的内源性和异源性底物(包括营养物质和药物)的流入和流出。目的:全转录组测序可同时分析总体和等位基因特异的mRNA表达,并检测多种RNA亚型。方法:在这里,我们基于来自10个人脑(包括过量的可卡因和正常脑组织)和12个正常肝脏的RNAseq数据,表征了来自基因位点编码转运蛋白的RNA转录本的变异。结果:在任一组织中65%的转运蛋白基因中均检测到mRNA表达,许多基因产生多个mRNA转录本。检测到转运蛋白内的单核苷酸多态性以及先前对药物基因组学影响的证据。我们还确定了转运蛋白基因附近具有潜在调控功能的非编码RNA。结论:利用RNAseq获得的结果在分子水平上提供了有关转运蛋白mRNA表达的详细信息,为膜转运的研究提供了新途径,并且与药物功效和毒性相关。

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