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异染色质蛋白 1 同源物 Swi6 与 Ers1 协同作用,调节 RNAi 指导的异染色质组装。

Heterochromatin protein 1 homologue Swi6 acts in concert with Ers1 to regulate RNAi-directed heterochromatin assembly.

机构信息

Laboratory for Chromatin Dynamics, RIKEN Center for Developmental Biology, Kobe, Hyogo 650-0047, Japan.

出版信息

Proc Natl Acad Sci U S A. 2012 Apr 17;109(16):6159-64. doi: 10.1073/pnas.1116972109. Epub 2012 Apr 2.

Abstract

In fission yeast, the RNAi pathway is required for centromeric heterochromatin assembly. siRNAs derived from centromeric transcripts are incorporated into the RNA-induced transcriptional silencing (RITS) complex and direct it to nascent homologous transcripts. The RNA-induced transcriptional silencing-bound nascent transcripts further recruit the RNA-directed RNA polymerase complex (RDRC) to promote dsRNA synthesis and siRNA production. Heterochromatin coated with Swi6/Heterochromain Protein 1 is then formed following recruitment of chromatin modification machinery. Swi6 is also required for the upstream production of siRNA, although the mechanism for this has remained obscure. Here, we demonstrate that Swi6 recruits RDRC to heterochromatin through Ers1, an RNAi factor intermediate. An ers1(+) mutant allele (ers1-C62) was identified in a genetic screen for mutants that alleviate centromeric silencing, and this phenotype was suppressed by overexpression of either the Hrr1 RDRC subunit or Clr4 histone H3-K9 methyltransferase. Ers1 physically interacts with Hrr1, and loss of Ers1 impairs RDRC centromeric localization. Although Ers1 failed to bind Clr4, a direct interaction with Swi6 was detected, and centromeric localization of Swi6 was enhanced by Clr4 overexpression in ers1-C62 cells. Consistent with this, deletion of swi6(+) reduced centromeric localization of Ers1 and RDRC. Moreover, tethering of Ers1 or Hrr1 to centromeric heterochromatin partially bypassed Swi6 function. These findings demonstrate an alternative mechanism for RDRC recruitment and explain the essential role of Swi6/Heterochromain Protein 1 in RNAi-directed heterochromatin assembly.

摘要

在裂殖酵母中,RNAi 途径对于着丝粒异染色质的组装是必需的。源自着丝粒转录本的 siRNA 被整合到 RNA 诱导的转录沉默(RITS)复合物中,并指导其与新生同源转录本结合。RNA 诱导的转录沉默结合的新生转录本进一步招募 RNA 指导的 RNA 聚合酶复合物(RDRC),以促进 dsRNA 的合成和 siRNA 的产生。随后,随着染色质修饰机制的募集,异染色质被 Swi6/异染色质蛋白 1 包被。Swi6 对于 siRNA 的上游产生也是必需的,尽管其机制仍然不清楚。在这里,我们证明 Swi6 通过 Ers1(RNAi 因子中间产物)将 RDRC 招募到异染色质。在一个遗传筛选中,我们鉴定了一个 ers1(+)突变等位基因(ers1-C62),该等位基因可以缓解着丝粒沉默,并且这种表型可以被 Hrr1 RDRC 亚基或 Clr4 组蛋白 H3-K9 甲基转移酶的过表达所抑制。Ers1 与 Hrr1 物理相互作用,并且 Ers1 的缺失会损害 RDRC 着丝粒定位。虽然 Ers1 未能与 Clr4 结合,但检测到与 Swi6 的直接相互作用,并且在 ers1-C62 细胞中 Clr4 的过表达增强了 Swi6 着丝粒的定位。与此一致的是,swi6(+)的缺失减少了 Ers1 和 RDRC 着丝粒的定位。此外,将 Ers1 或 Hrr1 锚定到着丝粒异染色质部分绕过了 Swi6 的功能。这些发现表明了 RDRC 招募的替代机制,并解释了 Swi6/异染色质蛋白 1 在 RNAi 指导的异染色质组装中的重要作用。

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