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CCR4/NOT complex associates with the proteasome and regulates histone methylation

机译:CCR4 / NOT复合物与蛋白酶体结合并调节组蛋白甲基化

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The proteasome regulates histone lysine methylation and gene transcription, but how it does so is poorly understood. To better understand this process, we used the epistatic miniarray profile (E-MAP) approach to identify factors that genetically interact with proteasomal subunits. In addition to members of the Set1 complex that mediate histone H3 lysine 4 methylation (H3K4me), we found that deleting members of the CCR4/NOT mRNA processing complex exhibit synthetic phenotypes when combined with proteasome mutants. Further biochemical analyses revealed physical associations between CCR4/NOT and the proteasome in vivo. Consistent with the genetic and biochemical interactions linking CCR4/NOT with proteasome and Set1-mediated methylation, we find that loss of Not4 decreases global and gene-specific H3K4 trimethylation (H3K4me3) and decreases 19S proteasome recruitment to the PMA1 gene. Similar to proteasome regulation of histone methylation, loss of CCR4/NOT members does not affect ubiquitinated H2B. Mapping of Not4 identified the RING finger domain as essential for H3K4me3, suggesting a role for ubiquitin in this process. Consistent with this idea, loss of the Not4-interacting protein Ubc4, a known ubiquitin-conjugating enzyme, decreases H3K4me3. These studies implicate CCR4/NOT in the regulation of H3K4me3 through a ubiquitin-dependent pathway that likely involves the proteasome.
机译:蛋白酶体调节组蛋白赖氨酸甲基化和基因转录,但它如何做到这一点知之甚少。为了更好地理解此过程,我们使用了上位性微阵列谱(E-MAP)方法来鉴定与蛋白酶体亚基发生遗传相互作用的因子。除了介导组蛋白H3赖氨酸4甲基化(H3K4me)的Set1复合物的成员外,我们发现与蛋白酶体突变体结合使用时,CCR4 / NOT mRNA处理复合物的缺失成员表现出合成表型。进一步的生化分析表明,体内CCR4 / NOT与蛋白酶体之间存在物理联系。与连接CCR4 / NOT与蛋白酶体和Set1介导的甲基化的遗传和生化相互作用一致,我们发现Not4的缺失减少了全局和基因特异性H3K4三甲基化(H3K4me3),并减少了19S蛋白酶体向PMA1基因的募集。与组蛋白甲基化的蛋白酶体调节相似,CCR4 / NOT成员的丢失不影响泛素化的H2B。 Not4的图谱确定了RING指域对于H3K4me3是必不可少的,表明泛素在此过程中的作用。与这个想法一致,Not4相互作用蛋白Ubc4(一种已知的泛素结合酶)的丢失会降低H3K4me3。这些研究通过可能涉及蛋白酶体的遍在蛋白依赖性途径将CCR4 / NOT牵涉到H3K4me3的调控中。

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