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洛考他汀通过修饰配体结合口袋中一个保守的组氨酸残基,破坏了Raf激酶抑制蛋白与结合蛋白的结合。

Locostatin Disrupts Association of Raf Kinase Inhibitor Protein With Binding Proteins by Modifying a Conserved Histidine Residue in the Ligand-Binding Pocket.

作者信息

Beshir Anwar B, Argueta Christian E, Menikarachchi Lochana C, Gascón José A, Fenteany Gabriel

机构信息

Department of Chemistry, University of Connecticut, Storrs, Connecticut.

出版信息

For Immunopathol Dis Therap. 2011;2(1):47-58. doi: 10.1615/forumimmundisther.v2.i1.60.

Abstract

Raf kinase inhibitor protein (RKIP) interacts with a number of different proteins and regulates multiple signaling pathways. Here, we show that locostatin, a small molecule that covalently binds RKIP, not only disrupts interactions of RKIP with Raf-1 kinase, but also with G protein-coupled receptor kinase 2. In contrast, we found that locostatin does not disrupt binding of RKIP to two other proteins: inhibitor of κB kinase α and transforming growth factor β-activated kinase 1. These results thus imply that different proteins interact with different regions of RKIP. Locostatin's mechanism of action involves modification of a nucleophilic residue on RKIP. We observed that after binding RKIP, part of locostatin is slowly hydrolyzed, leaving a smaller RKIP-butyrate adduct. We identified the residue alkylated by locostatin as His86, a highly conserved residue in RKIP's ligand-binding pocket. Computational modeling of the binding of locostatin to RKIP suggested that the recognition interaction between small molecule and protein ensures that locostatin's electrophilic site is poised to react with His86. Furthermore, binding of locostatin would sterically hinder binding of other ligands in the pocket. These data provide a basis for understanding how locostatin disrupts particular interactions of RKIP with RKIP-binding proteins and demonstrate its utility as a probe of specific RKIP interactions and functions.

摘要

Raf激酶抑制蛋白(RKIP)与多种不同蛋白质相互作用,并调节多个信号通路。在此,我们表明洛考他汀,一种与RKIP共价结合的小分子,不仅破坏RKIP与Raf-1激酶的相互作用,还破坏其与G蛋白偶联受体激酶2的相互作用。相比之下,我们发现洛考他汀不会破坏RKIP与另外两种蛋白质的结合:κB激酶α抑制剂和转化生长因子β激活激酶1。因此,这些结果意味着不同的蛋白质与RKIP的不同区域相互作用。洛考他汀的作用机制涉及对RKIP上一个亲核残基的修饰。我们观察到,在与RKIP结合后,洛考他汀的一部分会缓慢水解,留下一个较小的RKIP-丁酸酯加合物。我们确定被洛考他汀烷基化的残基为His86,这是RKIP配体结合口袋中一个高度保守的残基。洛考他汀与RKIP结合的计算模型表明,小分子与蛋白质之间的识别相互作用确保了洛考他汀的亲电位点准备好与His86反应。此外,洛考他汀的结合会在空间上阻碍口袋中其他配体的结合。这些数据为理解洛考他汀如何破坏RKIP与RKIP结合蛋白的特定相互作用提供了基础,并证明了其作为特定RKIP相互作用和功能探针的效用。

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