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An Exceptional Gene: Evolution of the TSPY Gene Family in Humans and Other Great Apes

机译:一个例外的基因:人和其他大猿猴中TSPY基因家族的进化

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The TSPY gene stands out from all other human protein-coding genes because of its high copy number and tandemly-repeated organization. Here, we review its evolutionary history in great apes in order to assess whether these unusual properties are more likely to result from a relaxation of constraint or an unusual functional role. Detailed comparisons with chimpanzee are possible because a finished sequence of the chimpanzee Y chromosome is available, together with more limited data from other apes. These comparisons suggest that the human-chimpanzee ancestral Y chromosome carried a tandem array of TSPY genes which expanded on the human lineage while undergoing multiple duplication events followed by pseudogene formation on the chimpanzee lineage. The protein coding region is the most highly conserved of the multi-copy Y genes in human-chimpanzee comparisons, and the analysis of the dN/dS ratio indicates that TSPY is evolutionarily highly constrained, but may have experienced positive selection after the human-chimpanzee split. We therefore conclude that the exceptionally high copy number in humans is most likely due to a human-specific but unknown functional role, possibly involving rapid production of a large amount of TSPY protein at some stage during spermatogenesis.
机译:TSPY基因由于其高拷贝数和串联重复组织而在所有其他人类蛋白质编码基因中脱颖而出。在这里,我们回顾了大猿的进化史,以评估这些异常性质是否更可能是由于放松约束或异常功能作用而产生的。与黑猩猩进行详细比较是可能的,因为可以获得黑猩猩Y染色体的完整序列,以及来自其他猿类的更有限的数据。这些比较表明,人-黑猩猩的祖先Y染色体携带一系列TSPY基因,它们在人的谱系中扩增,同时经历多次复制事件,随后在黑猩猩的谱系中形成假基因。在人黑猩猩比较中,蛋白质编码区是多拷贝Y基因中最保守的,对dN / dS比的分析表明,TSPY在进化上受到高度限制,但在人黑猩猩之后可能经历了阳性选择分裂。因此,我们得出结论,人类中异常高的拷贝数最有可能是由于人类特异性但未知的功能作用,可能涉及在精子发生过程中的某个阶段快速产生大量TSPY蛋白。

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