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酵母Hog1丝裂原活化蛋白(MAP)激酶中的两个相邻对接位点与Pbs2 MAP激酶激酶和Ptp2蛋白酪氨酸磷酸酶存在差异相互作用。

Two adjacent docking sites in the yeast Hog1 mitogen-activated protein (MAP) kinase differentially interact with the Pbs2 MAP kinase kinase and the Ptp2 protein tyrosine phosphatase.

作者信息

Murakami Yulia, Tatebayashi Kazuo, Saito Haruo

机构信息

Institute of Medical Sciences, The University of Tokyo, 4-6-1 Shirokanedai, Minato-ku, Tokyo 108-8639, Japan.

出版信息

Mol Cell Biol. 2008 Apr;28(7):2481-94. doi: 10.1128/MCB.01817-07. Epub 2008 Jan 22.

Abstract

Functional interactions between a mitogen-activated protein kinase (MAPK) and its regulators require specific docking interactions. Here, we investigated the mechanism by which the yeast osmoregulatory Hog1 MAPK specifically interacts with its activator, the MAPK kinase Pbs2, and its major inactivator, the protein phosphatase Ptp2. We found, in the N-terminal noncatalytic region of Pbs2, a specific Hog1-binding domain, termed HBD-1. We also defined two adjacent Pbs2-binding sites in Hog1, namely, the common docking (CD) domain and Pbs2-binding domain 2 (PBD-2). The PBD-2 docking site appears to be sterically blocked in the intact Hog1 molecule, but its affinity to Pbs2 is apparent in shorter fragments of Hog1. Both the CD and the PBD-2 docking sites are required for the optimal activation of Hog1 by Pbs2, and in the absence of both sites, Hog1 cannot be activated by Pbs2. These data suggest that the initial interaction of Pbs2 with the CD site might induce a conformational change in Hog1 so that the PBD-2 site becomes accessible. The CD and PBD-2 docking sites are also involved in the specific interaction between Hog1 and Ptp2 and govern the dynamic dephosphorylation of activated Hog1. Thus, the CD and the PBD-2 docking sites play critical roles in both the activation and inactivation of Hog1.

摘要

丝裂原活化蛋白激酶(MAPK)与其调节因子之间的功能相互作用需要特定的对接相互作用。在此,我们研究了酵母渗透调节型Hog1 MAPK与其激活剂MAPK激酶Pbs2以及其主要失活剂蛋白磷酸酶Ptp2特异性相互作用的机制。我们在Pbs2的N端非催化区域发现了一个特定的Hog1结合结构域,称为HBD-1。我们还在Hog1中定义了两个相邻的Pbs2结合位点,即通用对接(CD)结构域和Pbs2结合结构域2(PBD-2)。PBD-2对接位点在完整的Hog1分子中似乎在空间上被阻断,但其与Pbs2的亲和力在较短的Hog1片段中很明显。CD和PBD-2对接位点都是Pbs2最佳激活Hog1所必需的,并且在两个位点都不存在的情况下,Hog1不能被Pbs2激活。这些数据表明,Pbs2与CD位点的初始相互作用可能会诱导Hog1的构象变化,从而使PBD-2位点变得可及。CD和PBD-2对接位点也参与了Hog1与Ptp2之间的特异性相互作用,并控制激活的Hog1的动态去磷酸化。因此,CD和PBD-2对接位点在Hog1的激活和失活中都起着关键作用。

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