首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Elimination of shelterin components bypasses RNAi for pericentric heterochromatin assembly
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Elimination of shelterin components bypasses RNAi for pericentric heterochromatin assembly

机译:消除庇护素成分绕过RNAi进行外周中心异染色质组装

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摘要

The RNAi pathway is required for heterochromatin assembly at repetitive DNA elements in diverse organisms. In fission yeast, loss of RNAi causes pericentric heterochromatin defects, compromising gene silencing and chromosome segregation. Here we show that deletion of telomere shelterin components restores pericentric heterochromatin and its functions in RNAi mutants. We further isolated a separation-of-function mutant of Poz1 and revealed that defective telomere silencing, but not telomere length control, is critical for bypassing RNAi. Further analyses demonstrated that compromising shelterin-mediated heterochromatin assembly in RNAi mutants releases heterochromatin protein Swi6, which is redistributed to pericentric regions through RNAi-independent heterochromatin assembly pathways. Given the high mobility of Swi6 protein and that increased levels of Swi6 facilitates heterochromatin spreading as well as ectopic heterochromatin assembly, our results suggest that constitutive heterochromatin domains use multiple pathways to form high-affinity platforms to restrain Swi6, thus limiting its availability and avoiding promiscuous heterochromatin formation.
机译:RNAi途径是异质染色质在多种生物中重复DNA元件组装的必需条件。在裂变酵母中,RNAi的缺失会导致周缘异染色质缺陷,损害基因沉默和染色体分离。在这里,我们显示端粒庇护素成分的删除恢复了周围异染色质及其在RNAi突变体中的功能。我们进一步分离了Poz1的功能分离突变体,并揭示缺陷的端粒沉默,但不是端粒长度控制,是绕过RNAi的关键。进一步的分析表明,在RNAi突变体中破坏柄蛋白介导的异染色质装配的过程会释放出异染色质蛋白Swi6,Swi6通过独立于RNAi的异染色质装配途径重新分布到周围区域。鉴于Swi6蛋白的高迁移率和Swi6的水平升高促进异染色质扩散以及异位异染色质组装,我们的结果表明,组成型异染色质域使用多种途径形成高亲和力平台来抑制Swi6,从而限制了Swi6的可用性并避免了混杂异染色质形成。

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