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Significant abundance of cis configurations of coding variants in diploid human genomes

机译:二倍体人类基因组中编码变异体的顺式构型大量存在

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To fully understand human genetic variation and its functional consequences, the specific distribution of variants between the two chromosomal homologues of genes must be known. The ‘phase’ of variants can significantly impact gene function and phenotype. To assess patterns of phase at large scale, we have analyzed 18 121 autosomal genes in 1092 statistically phased genomes from the 1000 Genomes Project and 184 experimentally phased genomes from the Personal Genome Project. Here we show that genes with cis-configurations of coding variants are more frequent than genes with trans-configurations in a genome, with global cis/trans ratios of ~60:40. Significant cis-abundance was observed in virtually all genomes in all populations. Moreover, we identified a large group of genes exhibiting cis-configurations of protein-changing variants in excess, so-called ‘cis-abundant genes’, and a smaller group of ‘trans-abundant genes’. These two gene categories were functionally distinguishable, and exhibited strikingly different distributional patterns of protein-changing variants. Underlying these phenomena was a shared set of phase-sensitive genes of importance for adaptation and evolution. This work establishes common patterns of phase as key characteristics of diploid human exomes and provides evidence for their functional significance, highlighting the importance of phase for the interpretation of protein-coding genetic variation and gene function.
机译:为了充分了解人类遗传变异及其功能后果,必须知道基因的两个染色体同源物之间变异的具体分布。变体的“阶段”会显着影响基因功能和表型。为了大规模评估阶段模式,我们分析了来自1000个基因组计划的1092个统计阶段基因组中的18121个常染色体基因和来自个人基因组计划的184个实验阶段基因组。在这里,我们显示在基因组中具有顺式构型的编码变体的基因比具有反式构型的基因更常见,全局顺式/反比为〜60:40。在所有人群中的几乎所有基因组中都观察到了显着的顺丰。此外,我们鉴定了一大批表现出过量的蛋白质变化变异的顺式构型的基因,即所谓的“顺式富集基因”,和一小群的“反式富集基因”。这两个基因类别在功能上是可区分的,并且表现出蛋白质变化变体的惊人不同的分布模式。这些现象的基础是一组对适应和进化非常重要的相位敏感基因。这项工作建立了作为二倍体人类外显子组的关键特征的常见阶段模式,并为其功能的意义提供了证据,突出了阶段对于解释蛋白质编码的遗传变异和基因功能的重要性。

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