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Adaptive evolution drives the diversification of zinc-finger binding domains

机译:适应性进化推动锌指结合域的多样化

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摘要

The human genome is estimated to contain 700 zinc-finger genes, which perform many key functions, including regulating transcription. The dramatic increase in the number of these genes as we move from yeast to C. elegans to Drosophila and to humans, as well as the clustered organization of these genes in humans, suggests that gene duplication has played an important role in expanding this family of genes. Using likelihood methods developed by Yang and parsimony methods introduced by Suzuki and Gojobori, we have investigated four clusters of zinc-finger genes on human chromosome 19 and found evidence that positive selection was involved in diversifying the family of zinc-finger binding motifs.
机译:据估计,人类基因组包含700个锌指基因,它们执行许多关键功能,包括调节转录。随着我们从酵母到秀丽隐杆线虫再到果蝇以及人类的迁移,这些基因的数量急剧增加,而且这些基因在人类中的聚集组织表明,基因复制在扩大这个家族的基因。使用由Yang开发的似然方法以及由Suzuki和Gojobori引入的简约方法,我们研究了人类19号染色体上的四个锌指基因簇,并发现证据表明正选择参与了锌指结合基序家族的多样化。

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