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Structure of the HP1 chromodomain bound to histone H3 methylated at lysine 9

机译:与赖氨酸9甲基化的组蛋白H3结合的HP1染色体结构域

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Specific modifications to histones are essential epigenetic markers-heritable changes in gene expression that do not affect the DNA sequence. Methylation of lysine 9 in histone H3 is recognized by heterochromatin protein 1 (HP1), which directs the binding of other proteins to control chromatin structure and gene expression. Here we show that HP1 uses an induced-fit mechanism for recognition of this modification, as revealed by the structure of its chromodomain bound to a histone H3 peptide dimethylated at Nζ of lysine 9. The binding pocket for the N-methyl groups is provided by three aromatic side chains, Tyr21, Trp42 and Phe45, which reside in two regions that become ordered on binding of the peptide. The side chain of Lys 9 is almost fully extended and surrounded by residues that are conserved in many other chromodomains. The QTAR peptide sequence preceding Lys 9 makes most of the additional interactions with the chromodomain, with HP1 residues Val23, Leu 40, Trp42, Leu 58 and Cys60 appearing to be a major determinant of specificity by binding the key buried Ala 7. These findings predict which other chromodomains will bind methylated proteins and suggest a motif that they recognize.
机译:对组蛋白的特定修饰是必不可少的表观遗传标记-基因表达中可遗传的变化,不会影响DNA序列。异染色质蛋白1(HP1)识别组蛋白H3中赖氨酸9的甲基化,该蛋白指导其他蛋白的结合以控制染色质的结构和基因表达。在这里,我们显示HP1使用诱导拟合机制识别这种修饰,正如其色域与在赖氨酸9的Nζ处二甲基化的组蛋白H3肽结合的色域结构所揭示的那样。N-甲基的结合口袋由三个芳香族侧链,Tyr21,Trp42和Phe45,位于两个区域,在结合肽时变得有序。 Lys 9的侧链几乎完全延伸,并被许多其他染色体结构域中保守的残基包围。 Lys 9之前的QTAR肽序列与染色体结构域进行了大多数其他相互作用,其中HP1残基Val23,Leu 40,Trp42,Leu 58和Cys60通过结合关键的埋藏Ala 7似乎是特异性的主要决定因素。哪些其他色域将结合甲基化蛋白并提示它们识别的基序。

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