Department of Biochemistry and Biophysics, University of California, San Francisco, CA 94158, USA.
Proc Natl Acad Sci U S A. 2012 Jul 10;109(28):11258-63. doi: 10.1073/pnas.1204947109. Epub 2012 Jun 25.
Pericentromeric heterochromatin formation is mediated by repressive histone H3 lysine 9 methylation (H3K9Me) and its recognition by HP1 proteins. Intriguingly, in many organisms, RNAi is coupled to this process through poorly understood mechanisms. In Schizosaccharomyces pombe, the H3-K9 methyltransferase Clr4 and the heterochromatin protein 1 (HP1) ortholog Swi6 are critical for RNAi, whereas RNAi stimulates H3K9Me. In addition to the endoribonuclease Dcr1, RNAi in S. pombe requires two interacting protein complexes, the RITS complex, which contains an Argonaute subunit, and the RDRC complex, which contains an RNA-dependent RNA polymerase subunit. We previously identified Ers1 (essential for RNAi-dependent silencing) as an orphan protein that genetically acts in the RNAi pathway. Using recombinant proteins, we show here that Ers1 directly and specifically interacts with HP1/Swi6. Two-hybrid assays indicate that Ers1 also directly interacts with several RNAi factors. Consistent with these interactions, Ers1 associates in vivo with the RITS complex, the RDRC complex, and Dcr1, and it promotes interactions between these factors. Ers1, like Swi6, is also required for RNAi complexes to associate with pericentromeric noncoding RNAs. Overexpression of Ers1 results in a dominant-negative phenotype that can be specifically suppressed by increasing levels of the RDRC subunit Hrr1 or of Dcr1, further supporting a functional role for Ers1 in promoting the assembly of the RNAi machinery. Through the interactions described here, Ers1 may promote RNAi by tethering the corresponding enzyme complexes to HP1-coated chromatin, thereby placing them in proximity to the nascent noncoding RNA substrate.
着丝粒异染色质的形成是由抑制性组蛋白 H3 赖氨酸 9 甲基化(H3K9Me)及其与 HP1 蛋白的识别介导的。有趣的是,在许多生物体中,RNAi 通过尚未完全理解的机制与这一过程相关联。在裂殖酵母中,H3-K9 甲基转移酶 Clr4 和异染色质蛋白 1(HP1)同源物 Swi6 对 RNAi 至关重要,而 RNAi 则刺激 H3K9Me。除了内切核酸酶 Dcr1 外,裂殖酵母中的 RNAi 还需要两个相互作用的蛋白质复合物,即包含 Argonaute 亚基的 RITS 复合物和包含 RNA 依赖性 RNA 聚合酶亚基的 RDRC 复合物。我们之前将 Ers1(RNAi 依赖性沉默所必需的)鉴定为一个孤儿蛋白,它在 RNAi 途径中具有遗传作用。使用重组蛋白,我们在此表明 Ers1 直接且特异性地与 HP1/Swi6 相互作用。双杂交测定表明 Ers1 还直接与几个 RNAi 因子相互作用。与这些相互作用一致,Ers1 体内与 RITS 复合物、RDRC 复合物和 Dcr1 相关联,并促进这些因子之间的相互作用。Ers1 与 Swi6 一样,也需要 RNAi 复合物与着丝粒非编码 RNA 相关联。Ers1 的过表达导致显性负表型,可通过增加 RDRC 亚基 Hrr1 或 Dcr1 的水平特异性抑制,进一步支持 Ers1 在促进 RNAi 机器组装中的功能作用。通过这里描述的相互作用,Ers1 可能通过将相应的酶复合物系链到 HP1 包被的染色质上来促进 RNAi,从而使它们与新生的非编码 RNA 底物接近。