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Saccharomyces cerevisiae Linker Histone Hho1p Functionally Interacts with Core Histone H4 and Negatively Regulates the Establishment of Transcriptionally Silent Chromatin*

机译:酿酒酵母接头组蛋白Hho1p功能 与核心组蛋白H4相互作用并负面地调节H4的建立 转录沉默 染色质*

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摘要

Saccharomyces cerevisiae linker histone Hho1p is not essential for cell viability, and very little is known about its function in vivo. We show that deletion of HHO1 (hho1Δ) suppresses the defect in transcriptional silencing caused by a mutation in the globular domain of histone H4. hho1Δ also suppresses the reduction in HML silencing by the deletion of SIR1 that is involved in the establishment of silent chromatin at HML. We further show that hho1Δ suppresses changes in silent chromatin structure caused by the histone H4 mutation and sir1Δ. These results suggest that HHO1 plays a negative role in transcriptionally silent chromatin. We also provide evidence that Hho1p hinders the de novo establishment of silent chromatin but does not affect the stability of preexistent silent chromatin. Unlike canonical linker histones in higher eukaryotes that have a single conserved globular domain, Hho1p possesses two globular domains. We show that the carboxyl-terminal globular domain of Hho1p is dispensable for its function, suggesting that the mode of Hho1p action is similar to that of canonical linker histones.
机译:酿酒酵母接头组蛋白Hho1p对于细胞生存力不是必需的,对其体内功能的了解甚少。我们表明删除HHO1(hho1Δ)抑制了由组蛋白H4球状域中的突变引起的转录沉默缺陷。 hho1Δ还通过删除SIR1来抑制HML沉默的降低,而SIR1的缺失与HML沉默染色质的建立有关。我们进一步表明,hho1Δ抑制了由组蛋白H4突变和sir1Δ引起的沉默染色质结构变化。这些结果表明,HHO1在转录沉默染色质中起负作用。我们还提供证据表明,Hho1p阻碍了沉默染色质的从头建立,但不会影响先前存在的沉默染色质的稳定性。与具有单个保守的球状结构域的高级真核生物中的规范接头组蛋白不同,Hho1p具有两个球状结构域。我们表明,Hho1p的羧基末端球状结构域是可有可无的,这表明Hho1p的作用方式与典型的连接蛋白组蛋白相似。

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