首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Recognition of Unmodified Histone H3 by the First PHD Finger of Bromodomain-PHD Finger Protein 2 Provides Insights into the Regulation of Histone Acetyltransferases Monocytic Leukemic Zinc-finger Protein (MOZ) and MOZ-related factor (MORF)
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Recognition of Unmodified Histone H3 by the First PHD Finger of Bromodomain-PHD Finger Protein 2 Provides Insights into the Regulation of Histone Acetyltransferases Monocytic Leukemic Zinc-finger Protein (MOZ) and MOZ-related factor (MORF)

机译:Bromodomain-PHD手指蛋白2的第一个PHD手指识别未修饰的组蛋白H3提供了对组蛋白乙酰转移酶单核细胞白血病锌指蛋白(MOZ)和MOZ相关因子(MORF)调控的见解

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摘要

MOZ (monocytic leukemic zinc-finger protein) and MORF (MOZ-related factor) are histone acetyltransferases important for HOX gene expression as well as embryo and postnatal development. They form complexes with other regulatory subunits through the scaffold proteins BRPF1/2/3 (bromodomain-PHD (plant homeodomain) finger proteins 1, 2, or 3). BRPF proteins have multiple domains, including two PHD fingers, for potential interactions with histones. Here we show that the first PHD finger of BRPF2 specifically recognizes the N-terminal tail of unmodified histone H3 (unH3) and report the solution structures of this PHD finger both free and in complex with the unH3 peptide. Structural analysis revealed that the unH3 peptide forms a third antiparallel β-strand that pairs with the PHD1 two-stranded antiparallel β-sheet. The binding specificity was determined primarily through the recognition of arginine 2 and lysine 4 of the unH3 by conserved aspartic acids of PHD1 and of threonine 6 of the unH3 by a conserved asparagine. Isothermal titration calorimetry and NMR assays showed that post-translational modifications such as H3R2me2as, H3T3ph, H3K4me, H3K4ac, and H3T6ph antagonized the interaction between histone H3 and PHD1. Furthermore, histone binding by PHD1 was important for BRPF2 to localize to the HOXA9 locus in vivo. PHD1 is highly conserved in yeast NuA3 and other histone acetyltransferase complexes, so the results reported here also shed light on the function and regulation of these complexes.
机译:MOZ(单核细胞白血病锌指蛋白)和MORF(MOZ相关因子)是组蛋白乙酰基转移酶,对HOX基因表达以及胚胎和出生后发育至关重要。它们通过支架蛋白BRPF1 / 2/3(bromodomain-PHD(植物同源域)指状蛋白1、2或3)与其他调控亚基形成复合物。 BRPF蛋白具有多个结构域,包括两个PHD指,可用于与组蛋白的潜在相互作用。在这里,我们显示BRPF2的第一个PHD指具体识别未修饰的组蛋白H3(unH3)的N末端尾巴,并报告了该PHD指的游离和与unH3肽复合的溶液结构。结构分析显示,unH3肽形成了第三条反平行的β链,与PHD1两链反平行的β-折叠相配对。结合特异性主要是通过PHD1的保守天冬氨酸和unH3的苏氨酸6被保守的天冬酰胺识别来识别unH3的精氨酸2和赖氨酸4。等温滴定热法和NMR分析表明,翻译后修饰(例如H3R2me2as,H3T3ph,H3K4me,H3K4ac和H3T6ph)拮抗了组蛋白H3和PHD1之间的相互作用。此外,PHD1的组蛋白结合对于BRPF2在体内定位到HOXA9基因座很重要。 PHD1在酵母NuA3和其他组蛋白乙酰转移酶复合物中高度保守,因此此处报道的结果也阐明了这些复合物的功能和调控。

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