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首页> 外文期刊>Frontiers in Plant Science >Structure and Function of Centromeric and Pericentromeric Heterochromatin in Arabidopsis thaliana
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Structure and Function of Centromeric and Pericentromeric Heterochromatin in Arabidopsis thaliana

机译:<斜视>拟南芥甲基溴酸中浓缩铬素异铬胺的结构和功能

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The centromere is a specific chromosomal region where the kinetochore assembles to ensure the faithful segregation of sister chromatids during mitosis and meiosis. Centromeres are defined by a local enrichment of the specific histone variant CenH3 mostly at repetitive satellite sequences. A larger pericentromeric region containing repetitive sequences and transposable elements surrounds the centromere that adopts a particular chromatin state characterized by specific histone variants and post-translational modifications and forms a transcriptionally repressive chromosomal environment. In the model organism Arabidopsis thaliana centromeric and pericentromeric domains form conspicuous heterochromatin clusters called chromocenters in interphase. Here we discuss, using Arabidopsis as example, recent insight into mechanisms involved in maintenance and establishment of centromeric and pericentromeric chromatin signatures as well as in chromocenter formation.
机译:Centromere是一种特定的染色体区域,其中Kinetochore组装以确保在有丝分裂和减数分裂时持有姐妹染色体的忠实隔离。 Centromeres由局部富集特定的组蛋白变体CENH3主要是在重复卫星序列中。含有重复序列和转换元件的较大的脑大分子区域围绕着Centromere,其采用特定的染色质状态,其特征在于特定的组蛋白变体和翻译后修饰,并形成转录抑制染色体环境。在模型生物体拟南芥中,甲型焦化和脑大学域形成具有间期间的显着的异象蛋白簇。在这里,我们使用拟南芥作为示例讨论,最近洞察涉及维护和建立焦化和脑大致染色质签名以及染色体形成的机制。

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