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The solution structure of the first PHD finger of autoimmune regulator in complex with non-modified histone H3 tail reveals the antagonistic role of H3R2 methylation

机译:自身免疫调节剂的第一个PHD手指与未修饰的组蛋白H3尾部复合的溶液结构揭示了H3R2甲基化的拮抗作用

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Plant homeodomain (PHD) fingers are often present in chromatin-binding proteins and have been shown to bind histone H3 N-terminal tails. Mutations in the autoimmune regulator (AIRE) protein, which harbours two PHD fingers, cause a rare monogenic disease, autoimmune polyendocrinopathy-candidiasis-ectodermal dystrophy (APECED). AIRE activates the expression of tissue-specific antigens by directly binding through its first PHD finger (AIRE-PHD1) to histone H3 tails non-methylated at K4 (H3K4me0). Here, we present the solution structure of AIRE-PHD1 in complex with H3K4me0 peptide and show that AIRE-PHD1 is a highly specialized non-modified histone H3 tail reader, as post-translational modifications of the first 10 histone H3 residues reduce binding affinity. In particular, H3R2 dimethylation abrogates AIRE-PHD1 binding in vitro and reduces the in vivo activation of AIRE target genes in HEK293 cells. The observed antagonism by R2 methylation on AIRE-PHD1 binding is unique among the H3K4me0 histone readers and represents the first case of epigenetic negative cross-talk between non-methylated H3K4 and methylated H3R2. Collectively, our results point to a very specific histone code responsible for non-modified H3 tail recognition by AIRE-PHD1 and describe at atomic level one crucial step in the molecular mechanism responsible for antigen expression in the thymus.
机译:植物同源域(PHD)手指通常存在于染色质结合蛋白中,并已显示与组蛋白H3 N末端尾巴结合。带有两个PHD手指的自身免疫调节剂(AIRE)蛋白中的突变会引起罕见的单基因疾病,即自身免疫性多内分泌病-念珠菌病-表皮营养不良(APECED)。 AIRE通过其第一个PHD指状物(AIRE-PHD1)直接与在K4处未甲基化的组蛋白H3尾巴直接结合(H3K4me0),从而激活组织特异性抗原的表达。在这里,我们介绍与H3K4me0肽复合的AIRE-PHD1的溶液结构,并显示AIRE-PHD1是高度专业化的非修饰组蛋白H3尾阅读器,因为前10个组蛋白H3残基的翻译后修饰降低了结合亲和力。特别是,H3R2甲基化可在体外消除AIRE-PHD1的结合,并减少HEK293细胞中AIRE靶基因的体内激活。在H3K4me0组蛋白阅读器中,通过R2甲基化对AIRE-PHD1结合观察到的拮抗作用在H3K4me0组蛋白读取器中是唯一的,并且代表未甲基化的H3K4和甲基化的H3R2之间的表观遗传学负串扰的第一种情况。总的来说,我们的研究结果指向了一个非常具体的组蛋白密码,负责AIRE-PHD1对未修饰的H3尾巴的识别,并在原子水平上描述了负责胸腺中抗原表达的分子机制中的关键步骤。

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