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Chp1-Tas3 Interaction Is Required To Recruit RITS to Fission Yeast Centromeres and for Maintenance of Centromeric Heterochromatin

机译:需要Chp1-Tas3相互作用才能招募裂变酵母着丝粒RITS和维持着丝粒异染色质

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摘要

The maintenance of centromeric heterochromatin in fission yeast relies on the RNA interference-dependent complexes RITS (RNA-induced transcriptional silencing complex) and RDRC (RNA-directed RNA polymerase complex), which cooperate in a positive feedback loop to recruit high levels of histone H3 K9 methyltransferase activity to centromeres and to promote the assembly and maintenance of centromeric heterochromatin. However, it is unclear how these complexes are targeted to chromatin. RITS comprises Chp1, which binds K9-methylated histone H3; Ago1, which binds short interfering (siRNAs); the adaptor protein Tas3, which links Ago1 to Chp1; and centromeric siRNAs. We have generated mutants in RITS to determine the contribution of the two potential chromatin-targeting proteins Chp1 and Ago1 to the centromeric recruitment of RITS. Mutations in Tas3 that disrupt Ago1 binding are permissive for RITS recruitment and maintain centromeric heterochromatin, but the role of Tas3's interaction with Chp1 is unknown. Here, we define the Chp1 interaction domain of Tas3. A strain expressing a tas3 mutant that cannot bind Chp1 (Tas3Δ10-24) failed to maintain centromeric heterochromatin, with a loss of centromeric siRNAs, a failure to recruit RITS and RDRC to centromeres, and high levels of chromosome loss. These findings suggest a pivotal role for Chp1 and its association with Tas3 for the recruitment of RITS, RDRC, and histone H3 K9 methyltransferase activity to centromeres.
机译:裂变酵母中着丝粒异染色质的维持依赖于RNA干扰依赖性复合物RITS(RNA诱导的转录沉默复合物)和RDRC(RNA定向RNA聚合酶复合物),它们在正反馈回路中协同作用以募集高水平的组蛋白H3 K9甲基转移酶活性着丝粒并促进着丝粒异染色质的装配和维持。但是,尚不清楚这些复合物如何靶向染色质。 RITS包含Chp1,与K9甲基化的组蛋白H3结合。 Ago1,结合短干扰素(siRNA);衔接蛋白Tas3,将Ago1与Chp1连接;和着丝粒siRNA。我们已经在RITS中生成了突变体,以确定两种潜在的针对染色质的蛋白Chp1和Ago1对RITS着丝粒募集的贡献。 Tas3中破坏Ago1结合的突变允许RITS募集并维持着丝粒异染色质,但Tas3与Chp1相互作用的作用尚不清楚。在这里,我们定义Tas3的Chp1相互作用域。表达不能结合Chp1(tas3Δ10-24)的tas3突变体的菌株无法维持着丝粒异染色质,着丝粒siRNA丢失,无法将RITS和RDR​​C募集到着丝粒,并且染色体丢失率很高。这些发现表明Chp1及其与Tas3的关联对于RITS,RDRC和组蛋白H3 K9甲基转移酶活性向着丝粒的募集具有关键作用。

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