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(ADP-ribosyl)hydrolases: Structural Basis for Differential Substrate Recognition and Inhibition

机译:(ADP-核糖基)水解酶:差动底物识别和抑制的结构基础

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摘要

Protein ADP-ribosylation is a highly dynamic post-translational modification. The rapid turnover is achieved, among others, by ADP-(ribosyl)hydrolases (ARHs), an ancient family of enzymes that reverses this modification. Recently ARHs came into focus due to their role as regulators of cellular stresses and tumor suppressors. Here we present a comprehensive structural analysis of the enzymatically active family members ARH1 and ARH3. These two enzymes have very distinct substrate requirements. Our data show that binding of the adenosine ribose moiety is highly diverged between the two enzymes, whereas the active sites harboring the distal ribose closely resemble each other. Despite this apparent similarity, we elucidate the structural basis for the selective inhibition of ARH3 by the ADP-ribose analogues ADP-HPD and arginine-ADP-ribose. Together, our biochemical and structural work provides important insights into the mode of enzyme-ligand interaction, helps to understand differences in their catalytic behavior, and provides useful tools for targeted drug design.
机译:蛋白质ADP-核糖基化是一种高度动态的翻译后修饰。迅速营业额是通过ADP-(核糖基)水解酶(ARHS),古代酶系列,逆转这种修改。最近,由于它们作为细胞应激和肿瘤抑制器的调节剂的作用,ARHS陷入了焦点。在这里,我们对酶活性家族成员ARH1和ARH3提供了综合结构分析。这两种酶具有非常明显的基板要求。我们的数据表明,腺苷核糖部分的结合在两种酶之间具有高度分散,而携带远端核糖的活性位点彼此非常类似于彼此。尽管存在这种明显的相似性,我们阐明了ADP-核糖类似物ADP-HPD和精氨酸-ADP-核糖选择性抑制ARH3的结构基础。我们在一起,我们的生化和结构作品对酶 - 配体相互作用的模式提供了重要的见解,有助于了解其催化行为的差异,并为目标药物设计提供有用的工具。

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