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Sequence Requirements for Combinatorial Recognition of Histone H3 by the MRG15 and Pf1 Subunits of the Rpd3S/Sin3S Corepressor Complex

机译:通过MRG15和RPD3S / SIN3S铁芯转运器复合体的MRG15和PF1子单元组合识别组合H3的组合识别的顺序要求

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摘要

The transcriptional output at a genomic locus in eukaryotes is determined, in part, by the pattern of histone modifications that are read and interpreted by key effector proteins. The histone deacetylase activity of the evolutionarily-conserved Rpd3S/Sin3S complex is crucial for suppressing aberrant transcription from cryptic start sites within intragenic regions of actively transcribed genes. Precise targeting of the complex relies on the chromatin binding activities of the MRG15 and Pf1 subunits. Whereas the molecular target of the MRG15 chromodomain (CD) has been suggested to be H3K36me2/3, the precise molecular target of the Pf1 plant homeodomain 1 (PHD1) has remained elusive. Here we show that Pf1 PHD1 binds preferentially to the unmodified extreme N-terminus of histone H3 (H3K4me0) but not to H3K4me2/3, which are enriched in the promoter and 5′ regions of genes. Unlike previously characterized CD and PHD domains that bind to their targets with micromolar affinity, both MRG15 CD and Pf1 PHD1 bind to their targets with >100 μM affinity, offering an explanation for why both MRG15 CD and Pf1 PHD1 domains are required to target the Rpd3S/Sin3S complex to chromatin. Our results also suggest that bivalency, rather than cooperativity, is the operative mechanism by which Pf1 and MRG15 combine to engage H3 in a biologically significant manner. Finally, the studies reveal an unanticipated role of Pf1 PHD1 in engaging the MRG15 MRG domain, albeit in a Pf1 MRG-binding domain (MBD)-dependent manner, implying a key role for the MRG15 MRG-Pf1 MBD interaction in chromatin targeting of the Rpd3S/Sin3S complex.
机译:通过通过关键效应蛋白读取和解释的组蛋白修饰的模式,确定真核生物中基因组轨迹处的转录输出。进化保守的RPD3S / SIN3S复合物的组蛋白脱乙酰酶活性对于抑制在主动转录基因的腺体区域内从密码开始点抑制异常转录至关重要。复合物的精确靶向依赖于MRG15和PF1亚基的染色质结合活性。然而,已经提出MRG15染色体(CD)的分子靶标的H3K36ME2 / 3,但PF1植物同源域1(PHD1)的精确分子靶标仍然难以捉摸。在这里,我们表明PF1 PHD1优先结合组蛋白H3(H3K4ME0)的未修改的极端N-末端,但不含H3K4ME2 / 3,其富集于启动子和5'区域的基因区域。与先前表征的CD和PHD结构域不同,所述CD和PHD结构域具有微摩尔亲和力的靶,MRG15 CD和PF1 PHD1都与其具有>100μM亲和力的目标结合,为什么MRG15 CD和PF1 PHD1域瞄准RPD3的原因提供了解释/ sin3s复合物到染色质。我们的研究结果还表明,比级性而不是合作,是PF1和MRG15以生物学显着的方式接合H3的操作机制。最后,研究揭示了PF1 PHD1在接合MRG15 MRG结构域的意外作用,尽管在PF1 MRG结合结构域(MBD) - 依赖性方面,这意味着MRG15 MRG-PF1 MBD相互作用在染色体靶向中的关键作用RPD3S / SIN3S复杂。

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