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Structural basis of molecular recognition of helical histone H3 tail by PHD finger domains

机译:PHD手指域螺旋神经蛋白H3尾分子识别的结构基础

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摘要

The plant homeodomain (PHD) fingers are among the largest family of epigenetic domains, first characterized as readers of methylated H3K4. Readout of histone posttranslational modifications by PHDs has been the subject of intense investigation; however, less is known about the recognition of secondary structure features within the histone tail itself. We solved the crystal structure of the PHD finger of the bromodomain adjacent to zinc finger 2A [BAZ2A, also known as TIP5 (TTF-I/interacting protein 5)] in complex with unmodified N-terminal histone H3 tail. The peptide is bound in a helical folded-back conformation after K4, induced by an acidic patch on the protein surface that prevents peptide binding in an extended conformation. Structural bioinformatics analyses identify a conserved Asp/ Glu residue that we name 'acidic wall', found to be mutually exclusive with the conserved Trp for K4Me recognition. Neutralization or inversion of the charges at the acidic wall patch in BAZ2A, and homologous BAZ2B, weakened H3 binding. We identify simple mutations on H3 that strikingly enhance or reduce binding, as a result of their stabilization or destabilization of H3 helicity. Our work unravels the structural basis for binding of the helical H3 tail by PHD fingers and suggests that molecular recognition of secondary structure motifs within histone tails could represent an additional layer of regulation in epigenetic processes.
机译:植物同性恋源(博士)手指是最大的表观遗传结构域之家,首先是甲基化H3K4的读者。通过PHDS读出组蛋白后期修改一直是激烈调查的主题;然而,关于识别组蛋白尾部本身内的二级结构特征的较少。我们解决了溴基结构域相邻的锌指2A的PHD指[BAZ2A,也称为TIP5(TTF-I /相互作用蛋白5)]的晶体结构在复杂的用未修饰的N末端组蛋白H3尾部。肽在K4之后的螺旋折叠构象中与蛋白质表面上的酸性贴剂诱导的螺旋折叠构象相结合,该蛋白质表面诱导,其防止在延长的构象中肽结合。结构生物信息学分析鉴定的保守的Asp / Glu残基,我们命名“酸性墙”,发现是与保守的色氨酸为K4Me识别相互排斥的。在BAZ2A和同源BAZ2B中酸性壁贴剂中的中和或转化酸性壁贴剂的倒置,弱化H3结合。我们认为H3上的简单突变显着增强或减少结合,因为它们的稳定性或稳定化H3螺旋状。我们的工作解除了螺旋手指的螺旋H3尾部的结构基础,并表明组蛋白尾部中的二次结构基序的分子识别可以代表表观遗传过程中的另外的调节层。

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  • 来源
    《The Biochemical Journal》 |2017年第10期|共19页
  • 作者单位

    Univ Dundee Sch Life Sci Div Biol Chem &

    Drug Discovery James Black Ctr Dow St Dundee DD1 5EH Scotland;

    Univ Dundee Sch Life Sci Div Biol Chem &

    Drug Discovery James Black Ctr Dow St Dundee DD1 5EH Scotland;

    Univ Dundee Sch Life Sci Div Biol Chem &

    Drug Discovery James Black Ctr Dow St Dundee DD1 5EH Scotland;

    Univ Dundee Sch Life Sci Div Biol Chem &

    Drug Discovery James Black Ctr Dow St Dundee DD1 5EH Scotland;

    Univ Dundee Sch Life Sci Div Biol Chem &

    Drug Discovery James Black Ctr Dow St Dundee DD1 5EH Scotland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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