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Phosphorylated and dephosphorylated linker histone H1 reside in distinct chromatin domains in Tetrahymena macronuclei.

机译:磷酸化和去磷酸化的接头组蛋白H1位于四膜虫大核中不同的染色质结构域中。

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摘要

Phosphorylated and dephosphorylated isoforms of Tetrahymena macronuclear H1 were separated from each other by cation-exchange high performance liquid chromatography and used to generate a pairwise set of antisera that discriminate the phosphorylation state of this linker histone. Affinity-purified antibodies from each sera recognize appropriate H1 isoforms and stain macronuclei under appropriate physiological conditions. Immunogold localizations demonstrate that phosphorylated and dephosphorylated H1 localize nonrandomly in distinct subdomains of macronuclear chromatin. Dephosphorylated H1 is strongly enriched in the electron-dense chromatin bodies that punctuate macronuclear chromatin. In contrast, phosphorylated H1 isoforms, as well as an evolutionarily conserved H2A.F/Z-like variant (hv1) believed to function in the establishment of transcriptionally competent chromatin, are modestly enriched at the periphery of chromatin bodies and in the surrounding euchromatin. Using antibodies against TATA-binding protein, we show that transcriptionally active chromatin lies outside of the chromatin bodies in an area relatively devoid of H1. Antibodies against general core histones are more or less evenly distributed across these domains. Together, these data are consistent with a model in which phosphorylation of H1, perhaps in association with hv1, loosens the binding of H1 in chromatin leading to chromatin decondensation as part of a first-step mechanism in gene activation. In contrast, our data support the view that dephosphorylation of this linker histone facilitates or stabilizes condensed, transcriptionally silent chromatin.
机译:四膜虫大核H1的磷酸化和去磷酸化同工型通过阳离子交换高效液相色谱法相互分离,并用于生成成对的抗血清,以区分该接头组蛋白的磷酸化状态。来自每种血清的亲和纯化抗体可识别适当的H1亚型,并在适当的生理条件下染色大核。免疫金定位表明磷酸化和去磷酸化的H1非随机地定位在大核染色质的不同亚域中。去磷酸化的H1富含电子致密化染色质体,可插入大核染色质。相反,磷酸化的H1亚型以及据信在建立转录感受态染色质中起作用的进化保守的H2A.F / Z样变体(hv1)在染色质体的外围和周围的常染色质中适度富集。使用针对TATA结合蛋白的抗体,我们显示出转录活性染色质位于相对缺乏H1的区域中染色质体的外部。针对一般核心组蛋白的抗体或多或少均匀地分布在这些域中。总之,这些数据与一个模型相吻合,在该模型中,H1的磷酸化(可能与hv1结合)会放松H1在染色质中的结合,从而导致染色质去浓缩,这是基因激活第一步机制的一部分。相反,我们的数据支持以下观点,即该接头组蛋白的去磷酸化促进或稳定了浓缩的转录沉默染色质。

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