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转录因子TFII-I与T细胞中诱导型酪氨酸激酶之间新型相互作用的表征

Characterization of a novel interaction between transcription factor TFII-I and the inducible tyrosine kinase in T cells.

作者信息

Sacristán Catarina, Schattgen Stefan A, Berg Leslie J, Bunnell Stephen C, Roy Ananda L, Rosenstein Yvonne

机构信息

Departamento de Medicina Molecular y Bioprocesos, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Mexico.

出版信息

Eur J Immunol. 2009 Sep;39(9):2584-95. doi: 10.1002/eji.200839031.

Abstract

TCR signaling leads to the activation of kinases such as inducible tyrosine kinase (Itk), a key regulatory protein in T-lymphocyte activation and function. The homolog of Itk in B cells is Bruton's tyrosine kinase, previously shown to bind and phosphorylate the transcription factor TFII-I. TFII-I plays major roles in transcription and signaling. Our purpose herein was twofold: first, to identify some of the molecular determinants involved in TFII-I activation downstream of receptor crosslinking in T cells and second, to uncover the existence of Itk-TFII-I signaling in T lymphocytes. We report for the first time that TFII-I is tyrosine phosphorylated upon TCR, TCR/CD43, and TCR/CD28 co-receptor engagement in human and/or murine T cells. We show that Itk physically interacts with TFII-I and potentiates TFII-I-driven c-fos transcription. We demonstrate that TFII-I is phosphorylated upon co-expression of WT, but not kinase-dead, or kinase-dead/R29C mutant Itk, suggesting these residues are important for TFII-I phosphorylation, presumably via an Itk-dependent mechanism. Structural analysis of TFII-I-Itk interactions revealed that the first 90 residues of TFII-I are dispensable for Itk binding. Mutations within Itk's kinase, pleckstrin-homology, and proline-rich regions did not abolish TFII-I-Itk binding. Our results provide an initial step in understanding the biological role of Itk-TFII-I signaling in T-cell function.

摘要

TCR信号传导导致激酶激活,如诱导型酪氨酸激酶(Itk),它是T淋巴细胞激活和功能中的关键调节蛋白。B细胞中Itk的同源物是布鲁顿酪氨酸激酶,先前已证明其能结合并磷酸化转录因子TFII-I。TFII-I在转录和信号传导中起主要作用。我们在此的目的有两个:第一,确定T细胞受体交联下游参与TFII-I激活的一些分子决定因素;第二,揭示T淋巴细胞中Itk-TFII-I信号传导的存在。我们首次报道,在人和/或鼠T细胞中,TCR、TCR/CD43和TCR/CD28共受体结合后,TFII-I会发生酪氨酸磷酸化。我们表明,Itk与TFII-I发生物理相互作用,并增强TFII-I驱动的c-fos转录。我们证明,在共表达野生型Itk而非激酶失活型或激酶失活/R29C突变型Itk时,TFII-I会被磷酸化,这表明这些残基对TFII-I磷酸化很重要,可能是通过一种Itk依赖性机制。TFII-I与Itk相互作用的结构分析表明,TFII-I的前90个残基对于Itk结合是可有可无的。Itk的激酶、普列克底物蛋白同源性和富含脯氨酸区域内的突变并未消除TFII-I与Itk的结合。我们的结果为理解Itk-TFII-I信号传导在T细胞功能中的生物学作用迈出了第一步。

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