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Dynamic regulation of replication independent deposition of histone H3 in fission yeast

机译:动态调节组蛋白H3在裂殖酵母中的复制非依赖性沉积

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Recently, a histone H3 variant in Drosophila and humans, the H3.3 protein, was shown to replace canonical H3 in active chromatin in a replication-independent (RI) manner. In the fission yeast Schizosaccharomyces pombe, there exists a single form of H3, which is equivalent to H3.3 and is thought to participate in both replication-independent (RI) and replication-coupled (RC) nucleosome assembly. In this study, we show that RI deposition of H3 at heterochromatic regions is consistently lower than that at a gene-free euchromatic region, and deletion of the conserved heterochromatin-specific proteins Swi6 or Clr4 markedly increases RI deposition at heterochromatic regions such as the silent mating-type loci or centromeres. These results clearly show that RI deposition of H3 occurs preferentially in euchromatic regions. We also observed that RI deposition of H3 could be increased at the thi3(+) gene when transcription is induced, indicating transcription further facilitates RI deposition of H3. Taken together, these observations demonstrate that selective deposition of histone H3.3 at transcriptionally active chromatin by the RI assembly pathway is conserved in fission yeast and, thus, our data support an essential role of histone H3 replacement in maintaining active chromatin among diverse eukaryotic organisms ranging from fission yeast to humans.
机译:最近,果蝇和人类中的组蛋白H3变体H3.3蛋白以复制非依赖性(RI)的方式取代了活性染色质中的规范H3。在裂殖酵母粟酒裂殖酵母中,存在单一形式的H3,它等效于H3.3,并被认为既参与复制非依赖性(RI),又参与复制偶联(RC)核小体装配。在这项研究中,我们表明,H3在异色区域的RI沉积始终低于无基因常染色体区域的RI沉积,保守的异染色质特异性蛋白Swi6或Clr4的缺失显着增加了在异色区域(例如沉默区域)的RI沉积交配型基因座或着丝粒。这些结果清楚地表明,H3的RI沉积优先发生在常色区域中。我们还观察到诱导转录时,在thi3(+)基因上H3的RI沉积可能增加,这表明转录进一步促进了H3的RI沉积。综上所述,这些观察结果表明在裂变酵母中通过RI装配途径将组蛋白H3.3选择性沉积在转录活性染色质上是保守的,因此,我们的数据支持组蛋白H3替代在维持各种真核生物中活性染色质中的重要作用。从裂变酵母到人类。

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