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Structure of H3K36-methylated nucleosome-PWWP complex reveals multivalent cross-gyre binding

机译:H3K36-甲基化核心-PWWP复合物的结构揭示了多价十字型结合

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Recognition of histone-modified nucleosomes by specific reader domains underlies the regulation of chromatin-associated processes. Whereas structural studies revealed how reader domains bind modified histone peptides, it is unclear how reader domains interact with modified nucleosomes. Here, we report the cryo-electron microscopy structure of the PWWP reader domain of human transcriptional coactivator LEDGF in complex with an H3K36-methylated nucleosome at 3.2-angstrom resolution. The structure reveals multivalent binding of the reader domain to the methylated histone tail and to both gyres of nucleosomal DNA, explaining the known cooperative interactions. The observed cross-gyre binding may contribute to nucleosome integrity during transcription. The structure also explains how human PWWP domain-containing proteins are recruited to H3K36-methylated regions of the genome for transcription, histone acetylation and methylation, and for DNA methylation and repair.
机译:特异性读取器结构域对组蛋白修饰的核体的识别下潜染色质相关方法的调节。 而结构研究揭示了读者域如何结合改性的组蛋白肽,尚不清楚读者结构域如何与修饰的核肉相互作用。 在这里,我们在3.2埃分辨率下与H3K36-甲基化核小体复合物中的H3K36-甲基化核小体的H3K36-甲基化核小体的PWWP读卡器结构域的冷冻电子显微镜结构。 该结构揭示了读取器结构域对甲基化的组蛋白尾部的多价结合,并致核致组尾部的两个硅氧烷,解释了已知的协作相互作用。 观察到的十字型结合可能有助于转录过程中的核小体完整性。 该结构还解释了如何将含有人的PWWP域域的蛋白质募集到基因组的H3K36-甲基化区域用于转录,组蛋白乙酰化和甲基化,以及用于DNA甲基化和修复。

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