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Human Monogenic Disease Genes Have Frequently Functionally Redundant Paralogs

机译:人类单基因疾病基因经常在功能上多余的旁系同源物

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摘要

Mendelian disorders are often caused by mutations in genes that are not lethal but induce functional distortions leading to diseases. Here we study the extent of gene duplicates that might compensate genes causing monogenic diseases. We provide evidence for pervasive functional redundancy of human monogenic disease genes (MDs) by duplicates by manifesting 1) genes involved in human genetic disorders are enriched in duplicates and 2) duplicated disease genes tend to have higher functional similarities with their closest paralogs in contrast to duplicated non-disease genes of similar age. We propose that functional compensation by duplication of genes masks the phenotypic effects of deleterious mutations and reduces the probability of purging the defective genes from the human population; this functional compensation could be further enhanced by higher purification selection between disease genes and their duplicates as well as their orthologous counterpart compared to non-disease genes. However, due to the intrinsic expression stochasticity among individuals, the deleterious mutations could still be present as genetic diseases in some subpopulations where the duplicate copies are expressed at low abundances. Consequently the defective genes are linked to genetic disorders while they continue propagating within the population. Our results provide insight into the molecular basis underlying the spreading of duplicated disease genes.
机译:孟德尔疾病通常是由基因突变引起的,这些基因突变不是致命的,但会诱发导致疾病的功能性畸变。在这里,我们研究了可能补偿导致单基因疾病的基因的基因重复的程度。我们通过以下方式为人类单基因疾病基因(MDs)的遍历功能冗余提供证据:1)与人类遗传疾病有关的基因富含重复项,以及2)重复的疾病基因往往与其最接近的旁系同源性更高,与重复的类似年龄的非疾病基因。我们提出通过基因的重复进行功能补偿可以掩盖有害突变的表型效应,并降低从人群中清除缺陷基因的可能性。与非疾病基因相比,通过在疾病基因及其复制品和直系同源物之间进行更高的纯化选择,可以进一步增强这种功能补偿。但是,由于个体内在表达的随机性,有害突变仍可能作为遗传疾病存在于某些亚种群中,在这些亚种群中重复拷贝以低丰度表达。因此,当缺陷基因继续在人群中繁殖时,它们与遗传疾病有关。我们的结果提供了深入了解重复疾病基因传播的分子基础的信息。

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