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人类哺乳动物 ste20 样激酶的结构比较。

Structural comparison of human mammalian ste20-like kinases.

机构信息

Structural Genomics Consortium, University of Oxford, Oxford, United Kingdom.

出版信息

PLoS One. 2010 Aug 6;5(8):e11905. doi: 10.1371/journal.pone.0011905.

Abstract

BACKGROUND

The serine/threonine mammalian Ste-20 like kinases (MSTs) are key regulators of apoptosis, cellular proliferation as well as polarization. Deregulation of MSTs has been associated with disease progression in prostate and colorectal cancer. The four human MSTs are regulated differently by C-terminal regions flanking the catalytic domains.

PRINCIPAL FINDINGS

We have determined the crystal structure of kinase domain of MST4 in complex with an ATP-mimetic inhibitor. This is the first structure of an inactive conformation of a member of the MST kinase family. Comparison with active structures of MST3 and MST1 revealed a dimeric association of MST4 suggesting an activation loop exchanged mechanism of MST4 auto-activation. Together with a homology model of MST2 we provide a comparative analysis of the kinase domains for all four members of the human MST family.

SIGNIFICANCE

The comparative analysis identified new structural features in the MST ATP binding pocket and has also defined the mechanism for autophosphorylation. Both structural features may be further explored for inhibitors design.

ENHANCED VERSION

This article can also be viewed as an enhanced version in which the text of the article is integrated with interactive 3D representations and animated transitions. Please note that a web plugin is required to access this enhanced functionality. Instructions for the installation and use of the web plugin are available in Text S1.

摘要

背景

丝氨酸/苏氨酸哺乳动物 STE-20 样激酶(MSTs)是细胞凋亡、细胞增殖以及极化的关键调节因子。MSTs 的失调与前列腺癌和结直肠癌的疾病进展有关。四种人类 MSTs 被催化结构域侧翼的 C 端区域以不同的方式调节。

主要发现

我们已经确定了 MST4 激酶结构域与 ATP 模拟抑制剂复合物的晶体结构。这是 MST 激酶家族成员的第一个无活性构象的结构。与 MST3 和 MST1 的活性结构进行比较,揭示了 MST4 的二聚体关联,这表明 MST4 自动激活的激活环交换机制。结合 MST2 的同源模型,我们对人类 MST 家族的所有四个成员的激酶结构域进行了比较分析。

意义

比较分析确定了 MST ATP 结合口袋中的新结构特征,并定义了自动磷酸化的机制。这两个结构特征都可以进一步探索用于抑制剂设计。

增强版本

本文也可以被视为增强版本,其中文章的文本与交互式 3D 表示和动画过渡集成在一起。请注意,需要安装网络插件才能访问此增强功能。有关安装和使用网络插件的说明,请参阅文本 S1。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7ee/2920948/38cff7ce633f/pone.0011905.g001.jpg

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