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Histone H1 Limits DNA Methylation in Neurospora crassa

机译:组蛋白H1限制了神经孢霉的DNA甲基化

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摘要

Histone H1 variants, known as linker histones, are essential chromatin components in higher eukaryotes, yet compared to the core histones relatively little is known about their in vivo functions. The filamentous fungus Neurospora crassa encodes a single H1 protein that is not essential for viability. To investigate the role of N. crassa H1, we constructed a functional FLAG-tagged H1 fusion protein and performed genomic and molecular analyses. Cell fractionation experiments showed that H1-3XFLAG is a chromatin binding protein. Chromatin-immunoprecipitation combined with sequencing (ChIP-seq) revealed that H1-3XFLAG is globally enriched throughout the genome with a subtle preference for promoters of expressed genes. In mammals, the stoichiometry of H1 impacts nucleosome repeat length. To determine if H1 impacts nucleosome occupancy or nucleosome positioning in N. crassa, we performed micrococcal nuclease digestion in the wild-type and the ΔhH1 strain followed by sequencing (MNase-seq). Deletion of hH1 did not significantly impact nucleosome positioning or nucleosome occupancy. Analysis of DNA methylation by whole-genome bisulfite sequencing (MethylC-seq) revealed a modest but global increase in DNA methylation in the ΔhH1 mutant. Together, these data suggest that H1 acts as a nonspecific chromatin binding protein that can limit accessibility of the DNA methylation machinery in N. crassa.
机译:组蛋白H1变体,称为接头组蛋白,是高级真核生物中必不可少的染色质成分,但与核心组蛋白相比,对其体内功能的了解相对较少。丝状真菌Neurospora crassa编码单个H1蛋白,该蛋白对于生存力不是必需的。为了调查猪笼草H1的作用,我们构建了功能性FLAG标签的H1融合蛋白,并进行了基因组和分子分析。细胞分离实验表明,H1-3XFLAG是一种染色质结合蛋白。染色质免疫沉淀与测序(ChIP-seq)相结合显示,H1-3XFLAG在整个基因组中全球富集,对表达基因的启动子有微妙的偏爱。在哺乳动物中,H1的化学计量会影响核小体的重复长度。为了确定H1是否影响N. crassa中核小体的占有或核小体的位置,我们在野生型和ΔhH1菌株中进行了微球菌核酸酶消化,然后测序(MNase-seq)。 hH1的删除不会显着影响核小体的定位或核小体的占有率。通过全基因组亚硫酸氢盐测序(MethylC-seq)进行的DNA甲基化分析显示,ΔhH1突变体中DNA甲基化程度适度但总体上有所提高。总之,这些数据表明H1是一种非特异性的染色质结合蛋白,可以限制N. crassa中DNA甲基化机制的可及性。

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