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首页> 外文期刊>Chromosome research: An international journal on the molecular, supramolecular and evolutionary aspects of chromosome biology >Role of linker histone in chromatin structure and function: H1 stoichiometry and nucleosome repeat length.
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Role of linker histone in chromatin structure and function: H1 stoichiometry and nucleosome repeat length.

机译:接头组蛋白在染色质结构和功能中的作用:H1化学计量和核小体重复长度。

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摘要

Despite a great deal of attention over many years, the structural and functional roles of the linker histone H1 remain enigmatic. The earlier concepts of H1 as a general transcriptional inhibitor have had to be reconsidered in the light of experiments demonstrating a minor effect of H1 deletion in unicellular organisms. More recent work analysing the results of depleting H1 in mammals through genetic knockouts of selected H1 subtypes in the mouse has shown that cells and tissues can tolerate a surprisingly low H1 content. One common feature of H1-depleted nuclei is a reduction in nucleosome repeat length (NRL). Moreover, there is a robust linear relationship between H1 stoichiometry and NRL, suggesting an inherent homeostatic mechanism that maintains intranuclear electrostatic balance. It is also clear that the 1 H1 per nucleosome paradigm for higher eukaryotes is the exception rather than the rule. This, together with the high mobility of H1 within the nucleus, prompts a reappraisal of the role of linker histone as an obligatory chromatin architectural protein.
机译:尽管多年来已经引起了广泛关注,但是连接基团组蛋白H1的结构和功能仍然令人费解。 H1作为一般转录抑制剂的较早概念必须根据表明单细胞生物中H1缺失的较小影响的实验重新考虑。通过对小鼠中选定的H1亚型进行基因敲除来分析哺乳动物中H1消耗的结果的最新研究表明,细胞和组织可以耐受令人惊讶的低H1含量。 H1耗尽的核的一个共同特征是核小体重复长度(NRL)的减少。此外,H1化学计量与NRL之间存在稳固的线性关系,表明存在一种固有的体内平衡机制,可维持核内静电平衡。同样清楚的是,对于高等真核生物,每个核小体范式的1 H1是例外而不是规则。这与H1在核内的高迁移率一起,促使人们重新评估接头组蛋白作为必不可少的染色质结构蛋白的作用。

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