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基于双底物的蛋白激酶 C 同工酶选择性抑制剂的定向调节。

Directed modulation of protein kinase C isozyme selectivity with bisubstrate-based inhibitors.

机构信息

Medicinal Chemistry and Chemical Biology, Faculty of Science, Utrecht University, Universiteitsweg 99, 3584 CG, Utrecht, The Netherlands.

出版信息

ChemMedChem. 2012 Dec;7(12):2113-21. doi: 10.1002/cmdc.201200349. Epub 2012 Nov 8.

Abstract

Kinases present an attractive target for drug development, since they are involved in vital cellular processes and are implicated in a variety of diseases, such as cancer and diabetes. However, obtaining selectivity for a specific kinase over others is difficult since many current kinase inhibitors exclusively target the highly conserved kinase ATP binding domain. Previously, a microarray-based strategy to discover so-called bisubstrate-based inhibitors that target the more specific peptide binding groove in addition to the ATP binding site was described. One attractive feature of this strategy is the opportunity to tune the selectivity of these inhibitors by systematically varying components. In an extension to this previous work, this study explores the potential of this guided selectivity modulation, leading to a series of inhibitors with different selectivity profiles against highly homologous protein kinase C (PKC) isozymes. Of the inhibitors studied, most exhibited improved potency and selectivity compared with their constituent parts. Furthermore, the selectivity was found to be tunable either through modification of the pseudosubstrate peptide (peptide binding groove) or the ATP-competitive part (ATP binding site). In a number of cases, the selectivity of the construct could be predicted from the initial peptide substrate profiling experiment. Since this strategy is applicable to all kinase sets, it could be used to rapidly develop uniquely selective inhibitors.

摘要

激酶是药物开发的一个有吸引力的靶点,因为它们参与了重要的细胞过程,并与多种疾病(如癌症和糖尿病)有关。然而,获得对特定激酶的选择性是困难的,因为许多现有的激酶抑制剂专门针对高度保守的激酶 ATP 结合域。以前,曾描述过一种基于微阵列的策略,用于发现所谓的双底物抑制剂,这些抑制剂除了 ATP 结合位点外,还靶向更具特异性的肽结合槽。这种策略的一个吸引人的特点是,通过系统地改变组成部分,有机会调整这些抑制剂的选择性。在以前工作的基础上,本研究探讨了这种有指导的选择性调节的潜力,导致了一系列针对高度同源的蛋白激酶 C(PKC)同工酶具有不同选择性特征的抑制剂。在所研究的抑制剂中,大多数与它们的组成部分相比,表现出了更好的效力和选择性。此外,选择性可以通过修饰伪底物肽(肽结合槽)或 ATP 竞争性部分(ATP 结合位点)来调节。在许多情况下,可以根据初始肽底物分析实验来预测构建体的选择性。由于这种策略适用于所有激酶组,因此可以用于快速开发具有独特选择性的抑制剂。

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