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首页> 外文期刊>Results and problems in cell differentiation >Histone dynamics during transcription: exchange of H2A/H2B dimers and H3/H4 tetramers during pol II elongation.
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Histone dynamics during transcription: exchange of H2A/H2B dimers and H3/H4 tetramers during pol II elongation.

机译:转录过程中的组蛋白动力学:在pol II延伸过程中交换H2A / H2B二聚体和H3 / H4四聚体。

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摘要

Chromatin within eukaryotic cell nuclei accommodates many complex activities that require at least partial disassembly and reassembly of nucleosomes. This disassembly/reassembly is thought to be somewhat localized when associated with processes such as site-specific DNA repair but likely occurs over extended regions during processive processes such as DNA replication or transcription. Here we review data addressing the effect of transcription elongation on nucleosome disassembly/reassembly, specifically focusing on the issue of transcription-dependent exchange of H2A/H2B dimers and H3/H4 tetramers. We suggest a model whereby passage of a polymerase through a nucleosome induces displacement of H2A/H2B dimers with a much higher probability than displacement of H3/H4 tetramers such that the extent of tetramer replacement is relatively low and proportional to polymerase density on any particular gene.
机译:真核细胞核内的染色质适应许多复杂的活动,这些活动至少需要部分拆卸和重新组装核小体。当与诸如位点特异性DNA修复之类的过程相关联时,这种拆卸/重新组装被认为在某种程度上是局部的,但是可能在诸如DNA复制或转录的过程性过程中的扩展区域上发生。在这里,我们审查解决转录延长对核小体拆卸/重组的影响的数据,特别是专注于H2A / H2B二聚体和H3 / H4四聚体的转录依赖性交换问题。我们提出了一种模型,其中聚合酶通过核小体导致H2A / H2B二聚体的置换比H3 / H4四聚体的置换具有更高的概率,从而使四聚体置换的程度相对较低,并且与任何特定基因上的聚合酶密度成比例。

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