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Characterizing the genetic basis of transcriptome diversity through RNA-sequencing of 922 individuals

机译:通过对922位个体进行RNA测序来表征转录组多样性的遗传基础

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摘要

Understanding the consequences of regulatory variation in the human genome remains a major challenge, with important implications for understanding gene regulation and interpreting the many disease-risk variants that fall outside of protein-coding regions. Here, we provide a direct window into the regulatory consequences of genetic variation by sequencing RNA from 922 genotyped individuals. We present a comprehensive description of the distribution of regulatory variation—by the specific expression phenotypes altered, the properties of affected genes, and the genomic characteristics of regulatory variants. We detect variants influencing expression of over ten thousand genes, and through the enhanced resolution offered by RNA-sequencing, for the first time we identify thousands of variants associated with specific phenotypes including splicing and allelic expression. Evaluating the effects of both long-range intra-chromosomal and trans (cross-chromosomal) regulation, we observe modularity in the regulatory network, with three-dimensional chromosomal configuration playing a particular role in regulatory modules within each chromosome. We also observe a significant depletion of regulatory variants affecting central and critical genes, along with a trend of reduced effect sizes as variant frequency increases, providing evidence that purifying selection and buffering have limited the deleterious impact of regulatory variation on the cell. Further, generalizing beyond observed variants, we have analyzed the genomic properties of variants associated with expression and splicing and developed a Bayesian model to predict regulatory consequences of genetic variants, applicable to the interpretation of individual genomes and disease studies. Together, these results represent a critical step toward characterizing the complete landscape of human regulatory variation.
机译:理解人类基因组中调控变异的后果仍然是一项重大挑战,对于理解基因调控和解释蛋白质编码区域以外的许多疾病风险变异具有重要意义。在这里,我们通过对来自922个基因型个体的RNA进行测序,为了解遗传变异的调控结果提供了直接窗口。我们通过改变特定的表达表型,受影响的基因的特性以及调控变异的基​​因组特征,对调控变异的分布进行了全面的描述。我们检测到影响一万多个基因表达的变体,并且通过RNA测序提供的增强分辨率,我们首次确定了与特定表型相关的数千个变体,包括剪接和等位基因表达。评估远程染色体内和反式(跨染色体)调控的效果,我们观察到调控网络中的模块性,其中三维染色体配置在每个染色体内的调控模块中起着特殊的作用。我们还观察到影响中央和关键基因的调节变异体的大量消耗,以及随着变异频率增加效应大小减小的趋势,这提供了纯化选择和缓冲作用已限制了调节变异体对细胞的有害影响的证据。此外,除了观察到的变异以外,我们还分析了与表达和剪接相关的变异的基因组特性,并开发了贝叶斯模型来预测遗传变异的调控结果,适用于单个基因组和疾病研究的解释。总之,这些结果代表了朝着描绘人类监管变化的完整格局迈出的关键一步。

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