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Conformational stabilization of ubiquitin yields potent and selective inhibitors of USP7

机译:构象稳定的泛素产生有效和选择性的USP7抑制剂

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Protein conformation and function are often inextricably linked, such that the states a protein adopts define its enzymatic activity or its affinity for various partners. Here we combine computational design with macromolecular display to isolate functional conformations of ubiquitin that tightly bind the catalytic core of the oncogenic ubiquitin-specific protease 7 (USP7) deubiquitinase. Structural and biochemical characterization of these ubiquitin variants suggest that remodeled backbone conformations and core packing poise these molecules for stronger interactions, leading to potent and specific inhibition of enzymatic activity. A ubiquitin variant expressed in human tumor cell lines binds and inhibits endogenous USP7, thereby enhancing Mdm2 proteasomal turnover and stabilizing p53. In sum, we have developed an approach to rationally target macromolecular libraries toward the remodeling of protein conformation, shown that engineering of ubiquitin conformation can greatly increase its interaction with deubiquitinases and developed powerful tools to probe the cellular role of USP7.
机译:蛋白质的构象和功能通常是密不可分的,因此蛋白质所采用的状态定义了其酶促活性或对各种配偶体的亲和力。在这里,我们将计算设计与大分子展示相结合,以分离泛素的功能构象,后者与致癌泛素特异性蛋白酶7(USP7)去泛素酶的催化核心紧密结合。这些泛素变体的结构和生化特征表明,重构的骨架构象和核心堆积使这些分子具有更强的相互作用,从而导致对酶活性的有效和特异性抑制。在人类肿瘤细胞系中表达的泛素变体结合并抑制内源性USP7,从而增强Mdm2蛋白酶体更新并稳定p53。总而言之,我们已经开发出一种将大分子文库合理地靶向蛋白质构象的方法,表明泛素构象的工程设计可以大大增加其与去泛素酶的相互作用,并开发了强大的工具来探测USP7的细胞作用。

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