首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Genome Distribution of Replication-independent Histone H1 Variants Shows H1.0 Associated with Nucleolar Domains and H1X Associated with RNA Polymerase II-enriched Regions
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Genome Distribution of Replication-independent Histone H1 Variants Shows H1.0 Associated with Nucleolar Domains and H1X Associated with RNA Polymerase II-enriched Regions

机译:复制独立的组蛋白H1变体的基因组分布显示与核仁结构域相关的H1.0和与RNA聚合酶II富集区域相关的H1X。

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摘要

Unlike core histones, the linker histone H1 family is more evolutionarily diverse, and many organisms have multiple H1 variants or subtypes. In mammals, the H1 family includes seven somatic H1 variants; H1.1 to H1.5 are expressed in a replication-dependent manner, whereas H1.0 and H1X are replication-independent. Using ChIP-sequencing data and cell fractionation, we have compared the genomic distribution of H1.0 and H1X in human breast cancer cells, in which we previously observed differential distribution of H1.2 compared with the other subtypes. We have found H1.0 to be enriched at nucleolus-associated DNA repeats and chromatin domains, whereas H1X is associated with coding regions, RNA polymerase II-enriched regions, and hypomethylated CpG islands. Further, H1X accumulates within constitutive or included exons and retained introns and toward the 3′ end of expressed genes. Inducible H1X knockdown does not affect cell proliferation but dysregulates a subset of genes related to cell movement and transport. In H1X-depleted cells, the promoters of up-regulated genes are not occupied specifically by this variant, have a lower than average H1 content, and, unexpectedly, do not form an H1 valley upon induction. We conclude that H1 variants are not distributed evenly across the genome and may participate with some specificity in chromatin domain organization or gene regulation.
机译:与核心组蛋白不同,接头组蛋白H1家族在进化上更具多样性,许多生物具有多个H1变体或亚型。在哺乳动物中,H1家族包含七个体细胞H1变异体; H1.1至H1.5以复制相关的方式表达,而H1.0和H1X是复制独立的。使用ChIP测序数据和细胞分级分离,我们比较了人类乳腺癌细胞中H1.0和H1X的基因组分布,其中我们先前观察到H1.2与其他亚型的差异分布。我们发现H1.0富集于核仁相关的DNA重复序列和染色质结构域,而H1X与编码区,RNA聚合酶II富集区和低甲基化CpG岛相关。此外,H1X在组成型​​或包含的外显子和保留的内含子中积累,并朝向表达基因的3'端积累。诱导型H1X敲低不会影响细胞增殖,但会失调与细胞运动和转运相关的基因子集。在耗尽H1X的细胞中,上调基因的启动子不被该变异体特异性占据,其H1含量低于平均水平,并且出乎意料的是,诱导后不会形成H1谷。我们得出的结论是,H1变体在基因组中分布不均匀,并且可能在染色质域组织或基因调控中具有一定的特异性。

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