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控制TAB1与p38α之间特异性相互作用的决定因素。

Determinants that control the specific interactions between TAB1 and p38alpha.

作者信息

Zhou Huamin, Zheng Min, Chen Jianming, Xie Changchuan, Kolatkar Anand R, Zarubin Tyler, Ye Zhiyun, Akella Radha, Lin Shengcai, Goldsmith Elizabeth J, Han Jiahuai

机构信息

The Key Laboratory of the Ministry of Education for Cell Biology and Tumor Cell Engineering, School of Life Sciences, Xiamen University, Fujian, China.

出版信息

Mol Cell Biol. 2006 May;26(10):3824-34. doi: 10.1128/MCB.26.10.3824-3834.2006.

Abstract

Previous studies have revealed that transforming growth factor-beta-activated protein kinase 1 (TAB1) interacts with p38alpha and induces p38alpha autophosphorylation. Here, we examine the sequence requirements in TAB1 and p38alpha that drive their interaction. Deletion and point mutations in TAB1 reveal that a proline residue in the C terminus of TAB1 (Pro412) is necessary for its interaction with p38alpha. Furthermore, a cryptic D-domain-like docking site was identified adjacent to the N terminus of Pro412, putting Pro412 in the phi(B)+3 position of the docking site. Through mutational analysis, we found that the previously identified hydrophobic docking groove in p38alpha is involved in this interaction, whereas the CD domain and ED domain are not. Furthermore, chimeric analysis with p38beta (which does not bind to TAB1) revealed a previously unidentified locus of p38alpha comprising Thr218 and Ile275 that is essential for specific binding of p38alpha to TAB1. Converting either of these residues to the corresponding amino acid of p38beta abolishes p38alpha interaction with TAB1. These p38alpha mutants still can be fully activated by p38alpha upstream activating kinase mitogen-activated protein kinase kinase 6, but their basal activity and activation in response to some extracellular stimuli are reduced. Adjacent to Thr218 and Ile275 is a site where large conformational changes occur in the presence of docking-site peptides derived from p38alpha substrates and activators. This suggests that TAB1-induced autophosphorylation of p38alpha results from conformational changes that are similar but unique to those seen in p38alpha interactions with its substrates and activating kinases.

摘要

先前的研究表明,转化生长因子-β 激活蛋白激酶 1(TAB1)与 p38α 相互作用并诱导 p38α 自身磷酸化。在此,我们研究了驱动 TAB1 与 p38α 相互作用的序列要求。对 TAB1 的缺失和点突变分析表明,TAB1 羧基末端的一个脯氨酸残基(Pro412)对于其与 p38α 的相互作用是必需的。此外,在 Pro412 的氨基末端附近鉴定出一个隐蔽的 D 结构域样对接位点,使 Pro412 处于对接位点的 phi(B)+3 位置。通过突变分析,我们发现先前确定的 p38α 中的疏水对接凹槽参与了这种相互作用,而 CD 结构域和 ED 结构域则没有。此外,与 p38β(不与 TAB1 结合)的嵌合分析揭示了 p38α 中一个以前未确定的位点,该位点包含 Thr218 和 Ile275,对于 p38α 与 TAB1 的特异性结合至关重要。将这两个残基中的任何一个转换为 p38β 的相应氨基酸都会消除 p38α 与 TAB1 的相互作用。这些 p38α 突变体仍可被 p38α 上游激活激酶丝裂原活化蛋白激酶激酶 6 完全激活,但其基础活性以及对某些细胞外刺激的激活作用会降低。在 Thr218 和 Ile275 附近有一个位点,在存在源自 p38α 底物和激活剂的对接位点肽的情况下会发生大的构象变化。这表明 TAB1 诱导的 p38α 自身磷酸化是由构象变化引起的,这些构象变化与 p38α 与其底物和激活激酶相互作用时所观察到的构象变化相似但又独特。

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