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首页> 外文期刊>BMC Evolutionary Biology >Evolutionary history of histone demethylase families: distinct evolutionary patterns suggest functional divergence
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Evolutionary history of histone demethylase families: distinct evolutionary patterns suggest functional divergence

机译:组蛋白脱甲基酶家族的进化史:独特的进化模式表明功能差异

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Background Histone methylation can dramatically affect chromatin structure and gene expression and was considered irreversible until recent discoveries of two families of histone demethylases, the KDM1 (previously LSD1) and JmjC domain-containing proteins. These two types of proteins have different functional domains and distinct substrate specificities. Although more and more KDM1 and JmjC proteins have been shown to have histone demethylase activity, our knowledge about their evolution history is limited. Results We performed systematic phylogenetic analysis of these histone demethylase families and uncovered different evolutionary patterns. The KDM1 genes have been maintained with a stable low copy number in most organisms except for a few duplication events in flowering plants. In contrast, multiple genes for JmjC proteins with distinct domain architectures were present before the split of major eukaryotic groups, and experienced subsequent birth-and-death evolution. In addition, distinct evolutionary patterns can also be observed between animal and plant histone demethylases in both families. Furthermore, our results showed that some JmjC subfamilies contain only animal genes with specific demethylase activities, but do not have plant members. Conclusion Our study improves the understanding about the evolutionary history of KDM1 and JmjC genes and provides valuable insights into their functions. Based on the phylogenetic relationship, we discussed possible histone demethylase activities for several plant JmjC proteins. Finally, we proposed that the observed differences in evolutionary pattern imply functional divergence between animal and plant histone demethylases.
机译:背景组蛋白甲基化可显着影响染色质结构和基因表达,直到最近发现两个家族的组蛋白脱甲基酶,即KDM1(以前为LSD1)和含JmjC结构域的蛋白质,才被认为是不可逆的。这两种类型的蛋白质具有不同的功能域和不同的底物特异性。尽管越来越多的KDM1和JmjC蛋白已被证明具有组蛋白脱甲基酶活性,但我们对它们的进化历史的了解有限。结果我们对这些组蛋白脱甲基酶家族进行了系统的系统发育分析,发现了不同的进化模式。除了在开花植物中发生一些重复事件外,在大多数生物中,KDM1基因均保持稳定的低拷贝数。相反,在主要的真核生物组分裂之前,存在具有不同域结构的JmjC蛋白的多个基因,并且经历了随后的生死进化。另外,在两个家族的动物和植物组蛋白脱甲基酶之间也可以观察到不同的进化模式。此外,我们的结果表明,某些JmjC亚科仅包含具有特定脱甲基酶活性的动物基因,而没有植物成员。结论我们的研究增进了对KDM1和JmjC基因进化史的了解,并为它们的功能提供了有价值的见解。基于系统发育关系,我们讨论了几种植物JmjC蛋白可能的组蛋白脱甲基酶活性。最后,我们提出观察到的进化模式差异暗示动植物组蛋白去甲基化酶之间的功能差异。

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