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No longer a nuisance: long non-coding RNAs join CENP-A in epigenetic centromere regulation

机译:不再麻烦:长的非编码RNA加入CENP-A进行表观遗传着丝粒调控

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Centromeres represent the basis for kinetochore formation, and are essential for proper chromosome segregation during mitosis. Despite these essential roles, centromeres are not defined by specific DNA sequences, but by epigenetic means. The histone variant CENP-A controls centromere identity epigenetically and is essential for recruiting kinetochore components that attach the chromosomes to the mitotic spindle during mitosis. Recently, a new player in centromere regulation has emerged: long non-coding RNAs transcribed from repetitive regions of centromeric DNA function in regulating centromeres epigenetically. This review summarizes recent findings on the essential roles that transcription, pericentromeric transcripts, and centromere-derived RNAs play in centromere biology.
机译:着丝粒代表着线粒体形成的基础,并且对于有丝分裂期间正确的染色体分离至关重要。尽管有这些基本作用,着丝粒不是由特定的DNA序列定义,而是由表观遗传学方法定义。组蛋白变异体CENP-A表观遗传地控制着丝粒身份,并且对于募集在有丝分裂期间将染色体连接到有丝分裂纺锤体上的线粒体组件至关重要。最近,出现了着丝粒调控的新参与者:从着丝粒DNA重复区域转录的长非编码RNA在表观遗传上调控着丝粒。这篇综述总结了有关转录,着丝粒体转录本和着丝粒来源的RNA在着丝粒生物学中发挥重要作用的最新发现。

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