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Population-level expression variability of mitochondrial DNA-encoded genes in humans

机译:人类线粒体DNA编码基因的群体水平表达变异性

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摘要

Human mitochondria contain multiple copies of a circular genome made up of double-stranded DNA (mtDNA) that encodes proteins involved in cellular respiration. Transcript abundance of mtDNA-encoded genes varies between human individuals, yet the level of variation in the general population has not been systematically assessed. In the present study, we revisited large-scale RNA sequencing data generated from lymphoblastoid cell lines of HapMap samples of European and African ancestry to estimate transcript abundance and quantify expression variation for mtDNA-encoded genes. In both populations, we detected up to over 100-fold difference in mtDNA gene expression between individuals. The marked variation was not due to differences in mtDNA copy number between individuals, but was shaped by the transcription of hundreds of nuclear genes. Many of these nuclear genes were co-expressed with one another, resulting in a module-enriched co-expression network. Significant correlations in expression between genes of the mtDNA and nuclear genomes were used to identify factors involved with the regulation of mitochondrial functions. In conclusion, we determined the baseline amount of variability in mtDNA gene expression in general human populations and cataloged a complete set of nuclear genes whose expression levels are correlated with those of mtDNA-encoded genes. Our findings will enable the integration of information from both mtDNA and nuclear genetic systems, and facilitate the discovery of novel regulatory pathways involving mitochondrial functions.
机译:人线粒体包含由双链DNA(mtDNA)组成的环状基因组的多个副本,该双链DNA编码参与细胞呼吸的蛋白质。 mtDNA编码基因的转录本丰富度因人而异,但是尚未对一般人群的变异水平进行系统评估。在本研究中,我们重新研究了从欧洲和非洲血统的HapMap样本的淋巴母细胞样细胞系生成的大规模RNA测序数据,以估计转录本丰度并量化mtDNA编码基因的表达变异。在这两个人群中,我们检测到个体之间的mtDNA基因表达差异高达100倍以上。明显的变化不是由于个体之间mtDNA拷贝数的差异,而是由数百个核基因的转录形成的。这些核基因中有许多彼此共表达,从而形成了一个模块富集的共表达网络。 mtDNA基因与核基因组之间表达的显着相关性用于鉴定与调节线粒体功能有关的因素。总之,我们确定了一般人群中mtDNA基因表达的基线变异量,并列出了一套完整的核基因,其表达水平与mtDNA编码基因的表达水平相关。我们的发现将使来自mtDNA和核遗传系统的信息整合成为可能,并有助于发现涉及线粒体功能的新型调控途径。

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