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Generation of inhibitor-sensitive protein tyrosine phosphatases via active-site mutations.

机译:通过活性位点突变产生对抑制剂敏感的蛋白酪氨酸磷酸酶。

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摘要

Protein tyrosine phosphatases (PTPs) catalyze the dephosphorylation of phosphotyrosine, a central control element in mammalian signal transduction. Small-molecule inhibitors that are specific for each cellular PTP would be valuable tools in dissecting phosphorylation networks and for validating PTPs as therapeutic targets. However, the common architecture of PTP active sites impedes the discovery of selective PTP inhibitors. Our laboratory has recently used enzyme/inhibitor-interface engineering to generate selective PTP inhibitors. The crux of the strategy resides in the design of "inhibitor-sensitized" PTPs through protein engineering of a novel binding pocket in the target PTP. "Allele-specific" inhibitors that selectively target the sensitized PTP can be synthesized by modifying broad-specificity inhibitors with bulky chemical groups that are incompatible with wild-type PTP active sites; alternatively, specific inhibitors that serendipitously recognize the sensitized PTP's non-natural pocket may bediscovered from panels of "non-rationally" designed compounds. In this review, we describe the current state of the PTP-sensitization strategy, with emphases on the methodology of identifying PTP-sensitizing mutations and synthesizing the compounds that have been found to target PTPs in an allele-specific manner. Moreover, we discuss the scope of PTP sensitization in regard to the potential application of the approach across the family of classical PTPs.
机译:蛋白质酪氨酸磷酸酶(PTP)催化磷酸酪氨酸的去磷酸化,磷酸酪氨酸是哺乳动物信号转导中的核心控制元件。对每种细胞PTP特异的小分子抑制剂在解剖磷酸化网络和验证PTP作为治疗靶标方面将是有价值的工具。但是,PTP活性位点的通用体系结构阻碍了选择性PTP抑制剂的发现。我们的实验室最近使用酶/抑制剂界面工程来生成选择性PTP抑制剂。该策略的关键在于通过对目标PTP中新的结合口袋进行蛋白质工程设计“抑制剂敏感”的PTP。可以通过用与野生型PTP活性位点不相容的庞大化学基团修饰宽特异性抑制剂来合成选择性靶向致敏PTP的“等位基因特异性”抑制剂。或者,可以从“非理性”设计的化合物组中发现偶然识别致敏的PTP的非天然口袋的特异性抑制剂。在这篇综述中,我们描述了PTP致敏策略的当前状态,重点介绍了识别PTP致敏突变和合成已发现以等位基因特异性方式靶向PTP的化合物的方法。此外,我们讨论了该方法在整个经典PTP系列中的潜在应用方面的PTP敏化范围。

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