首页> 美国卫生研究院文献>American Journal of Human Genetics >Molecular Population Genetics of the Gene Encoding the Human Fertilization Protein Zonadhesin Reveals Rapid Adaptive Evolution
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Molecular Population Genetics of the Gene Encoding the Human Fertilization Protein Zonadhesin Reveals Rapid Adaptive Evolution

机译:分子编码人类受精蛋白Zonadhesin基因的分子遗传学揭示了快速的适应性进化。

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摘要

A hallmark of positive selection (adaptive evolution) in protein-coding regions is a dN/dS ratio >1, where dN is the number of nonsynonymous substitutionsonsynonymous sites and dS is the number of synonymous substitutions/synonymous sites. Zonadhesin is a male reproductive protein localized on the sperm head, comprising many domains known to be involved in cell-cell interaction or cell adhesion. Previous studies have shown that VWD domains (homologous to the D domains of the von Willebrand factor) are involved directly in binding to the female zona pellucida (ZP) in a species-specific manner. In this study, we sequenced 47 coding exons in 12 primate species and, by using maximum-likelihood methods to determine sites under positive selection, we show that VWD2, membrane/A5 antigen mu receptor, and mucin-like domains in zonadhesin are rapidly evolving and, thus, may be involved in binding to the ZP in a species-specific manner in primates. In addition, polymorphism data from 48 human individuals revealed significant polymorphism-to-divergence heterogeneity and a significant departure from equilibrium-neutral expectations in the frequency spectrum, suggesting balancing selection and positive selection occurring in zonadhesin (ZAN) within human populations. Finally, we observe adaptive evolution in haplotypes segregating for a frameshift mutation that was previously thought to indicate that ZAN was a potential pseudogene.
机译:蛋白质编码区中正选择(适应性进化)的标志是dN / dS比> 1,其中dN是非同义取代/非同义位点的数量,dS是同义取代/同义位点的数量。 Zonadhesin是雄性生殖蛋白,位于精子头部,包含许多已知与细胞-细胞相互作用或细胞粘附有关的域。先前的研究表明,VWD结构域(与von Willebrand因子的D结构域同源)以物种特异性方式直接参与与雌性透明带(ZP)的结合。在这项研究中,我们对12个灵长类物种中的47个编码外显子进行了测序,并通过最大似然方法确定阳性选择下的位点,结果显示,zonadhesin中的VWD2,膜/ A5抗原mu受体和粘蛋白样结构域正在迅速发展。并且因此可能以物种特异性的方式参与灵长类动物与ZP的结合。此外,来自48个人类个体的多态性数据显示,在频谱中存在显着的多态性至发散性异质性,并且与平衡中性预期值存在显着差异,这表明在人类群体中的zonadhesin(ZAN)中发生了平衡选择和正选择。最后,我们观察到单倍型中针对移码突变的适应性进化,以前认为这表明ZAN是潜在的假基因。

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