破坏sh3介导的诱导t细胞激酶相互作用的体内后果。

Journal of signal transduction Pub Date : 2012-01-01 Epub Date: 2012-05-09 DOI:10.1155/2012/694386
Roman M Levytskyy, Nupura Hirve, David M Guimond, Lie Min, Amy H Andreotti, Constantine D Tsoukas
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引用次数: 95

摘要

ITK- sh3介导的相互作用,无论是与外源配体的相互作用,还是通过与ITK- sh2的分子间自结合,已被证明对ITK活性的调节是重要的。这些相互竞争的SH3相互作用的生物学意义尚不完全清楚。ITK突变体,其中SH3结构域被相关激酶BTK取代(ITK-BTK((SH3)))),用于破坏ITK的分子间自结合,同时维持与外源配体(如SLP-76)的典型结合。ITK-BTK((SH3))与SLP-76的关联降低,导致转磷酸化效率低下,plc γ - 1的磷酸化降低,Th(2)细胞因子的产生减少。相比之下,ITK-BTK((SH3))在t细胞- apc接触位点的定位上没有缺陷。ITK激活环中的另一个突变Y511F会损害ITK的激活。表达ITK- y511f的T细胞表现出ITK及其下游靶点PLCγ1磷酸化缺陷,以及Th(2)细胞因子的显著抑制。相比之下,ITK-Y511F在T细胞- apc接触位点的诱导定位及其与SLP-76的关联不受影响。目前的数据进一步支持了ITK与其信号伙伴之间的精确相互作用,以支持ITK在TCR下游的信号传导的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

In Vivo Consequences of Disrupting SH3-Mediated Interactions of the Inducible T-Cell Kinase.

In Vivo Consequences of Disrupting SH3-Mediated Interactions of the Inducible T-Cell Kinase.

In Vivo Consequences of Disrupting SH3-Mediated Interactions of the Inducible T-Cell Kinase.

In Vivo Consequences of Disrupting SH3-Mediated Interactions of the Inducible T-Cell Kinase.

ITK-SH3-mediated interactions, both with exogenous ligands and via intermolecular self-association with ITK-SH2, have been shown to be important for regulation of ITK activity. The biological significance of these competing SH3 interactions is not completely understood. A mutant of ITK where substitution of the SH3 domain with that of the related kinase BTK (ITK-BTK((SH3))) was used to disrupt intermolecular self-association of ITK while maintaining canonical binding to exogenous ligands such as SLP-76. ITK-BTK((SH3)) displays reduced association with SLP-76 leading to inefficient transphosphorylation, reduced phosphorylation of PLCγ1, and diminished Th(2) cytokine production. In contrast, ITK-BTK((SH3)) displays no defect in its localization to the T-cell-APC contact site. Another mutation, Y511F, in the activation loop of ITK, impairs ITK activation. T cells expressing ITK-Y511F display defective phosphorylation of ITK and its downstream target PLCγ1, as well as significant inhibition of Th(2) cytokines. In contrast, the inducible localization of ITK-Y511F to the T cell-APC contact site and its association with SLP-76 are not affected. The presented data lend further support to the hypothesis that precise interactions between ITK and its signaling partners are required to support ITK signaling downstream of the TCR.

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