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蛋白激酶C同工酶及其对鲁比前列酮的选择性。

Protein kinase C isozymes and their selectivity towards ruboxistaurin.

作者信息

Tang Sishi, Xiao Victor, Wei Lianhu, Whiteside Catharine I, Kotra Lakshmi P

机构信息

Division of Cell and Molecular Biology, Center for Molecular Design and Preformulations, Toronto General Research Institute, University Health Network, Toronto ON M5G 1L7, Canada.

出版信息

Proteins. 2008 Jul;72(1):447-60. doi: 10.1002/prot.21942.

Abstract

Protein kinase C (PKC) isozymes are an important class of enzymes in cell signaling and as drug targets. They are involved in specific pathways and have selectivity towards certain ligands, despite their high sequence similarities. Ruboxistaurin is a specific inhibitor of PKC-beta. To understand the molecular determinants for the selectivity of ruboxistaurin, we derived the three-dimensional structures of the kinase domains of PKC-alpha, -betaI, and -zeta using homology modeling. Several binding orientations of ruboxistaurin in the binding sites of these PKC catalytic domains were analyzed, and a putative alternative binding site for PKC-zeta was identified in its kinase domain. The calculated free energy of binding correlates well with the IC(50) of the inhibitor against each PKC isozyme. A residue-based energy decomposition analysis attributed the binding free energy to several key residues in the catalytic sites of these enzymes, revealing potential protein-ligand interactions responsible for ligand binding. The contiguous binding site revealed in the catalytic domain of PKC-zeta provides avenues for selective drug design. The details of structural nuances for specific inhibition of PKC isozymes are presented in the context of the three-dimensional structures of this important class of enzymes.

摘要

蛋白激酶C(PKC)同工酶是细胞信号传导中一类重要的酶,也是药物作用靶点。尽管它们的序列高度相似,但它们参与特定的信号通路,并且对某些配体具有选择性。鲁伯斯塔林是PKC-β的特异性抑制剂。为了了解鲁伯斯塔林选择性的分子决定因素,我们通过同源建模获得了PKC-α、-βI和-ζ激酶结构域的三维结构。分析了鲁伯斯塔林在这些PKC催化结构域结合位点的几种结合取向,并在PKC-ζ的激酶结构域中确定了一个假定的替代结合位点。计算得到的结合自由能与抑制剂对每种PKC同工酶的IC50值具有良好的相关性。基于残基的能量分解分析将结合自由能归因于这些酶催化位点中的几个关键残基,揭示了负责配体结合的潜在蛋白质-配体相互作用。PKC-ζ催化结构域中揭示的连续结合位点为选择性药物设计提供了途径。在这类重要酶的三维结构背景下,阐述了特异性抑制PKC同工酶的结构细微差异细节。

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