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Identification and characterization of posttranslational modification-specific binding proteins in vivo by mammalian tethered catalysis

机译:哺乳动物束缚催化的体内翻译后修饰特异性结合蛋白的鉴定与表征

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摘要

Increasing evidence indicates that an important consequence of protein posttranslational modification (PTM) is the creation of a high affinity binding site for the selective interaction with a PTM-specific binding protein (BP). This PTM-mediated interaction is typically required for downstream signaling propagation and corresponding biological responses. Because the vast majority of mammalian proteins contain PTMs, there is an immediate need to discover and characterize previously undescribed PTMBPs. To this end, we developed and validated an innovative in vivo approach called mammalian tethered catalysis (MTeC). By using methylated histones and methyl-specific histone binding proteins as the proof-of-principle, we determined that the new MTeC approach can compliment existing in vitro binding methods, and can also provide unique in vivo insights into PTM-dependent interactions. For example, we confirmed previous in vitro findings that endogenous HP1 preferentially binds H3K9me3. However, in contrast to recent in vitro observations, MTeC revealed that the tandem tudor domain-containing proteins, JMJD2A and 53BP1, display no preferential H4K20 methyl-selectivity in vivo. Last, by using MTeC in an unbiased manner to identify H3K9 methyl-specific PTMBPs, we determined that endogenous G9a binds methylated H3K9 in vivo. Further use of MTeC to characterize this interaction revealed that G9a selectively binds H3K9me1 in vivo, but not H3K9me2, contrary to recent in vitro findings. Although this study focused solely on methylated histones, we demonstrate how the innovative MTeC approach could be used to identify and characterize any PTMBP that binds any PTM on any protein in vivo.
机译:越来越多的证据表明,蛋白质翻译后修饰(PTM)的重要结果是产生了高亲和力结合位点,用于与PTM特异性结合蛋白(BP)选择性相互作用。这种PTM介导的相互作用通常是下游信号传导和相应生物学反应所必需的。由于绝大多数哺乳动物蛋白都含有PTM,因此迫切需要发现和表征先前未描述的PTMBP。为此,我们开发并验证了一种创新的体内方法,称为哺乳动物系留催化(MTeC)。通过使用甲基化的组蛋白和甲基特异性的组蛋白结合蛋白作为原理证明,我们确定新的MTeC方法可以补充现有的体外结合方法,并且还可以提供对PTM依赖性相互作用的独特体内见解。例如,我们证实了先前的体外发现,即内源性HP1优先结合H3K9me3。但是,与最近的体外观察相反,MTeC揭示了含有串联Tudor域的蛋白质JMJD2A和53BP1在体内没有优先的H4K20甲基选择性。最后,通过以无偏见的方式使用MTeC来识别H3K9甲基特异性PTMBP,我们确定了内源性G9a在体内结合了甲基化的H3K9。与最近的体外发现相反,进一步使用MTeC表征这种相互作用的特性表明G9a在体内选择性结合H3K9me1,但不与H3K9me2结合。尽管这项研究仅关注甲基化的组蛋白,但我们证明了创新的MTeC方法可用于鉴定和表征体内结合任何蛋白质上任何PTM的任何PTMBP。

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