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CD4的gp120连接可诱导p56lck激活以及TCR脱敏,且不依赖于TCR酪氨酸磷酸化。

gp120 ligation of CD4 induces p56lck activation and TCR desensitization independent of TCR tyrosine phosphorylation.

作者信息

Goldman F, Jensen W A, Johnson G L, Heasley L, Cambier J C

机构信息

Department of Pediatrics, National Jewish Center for Immunology and Respiratory Medicine, Denver, CO 80206.

出版信息

J Immunol. 1994 Oct 1;153(7):2905-17.

PMID:7522245
Abstract

HIV gp120 binding to CD4 suppresses TCR function. The molecular mechanism of this anergizing effect is incompletely understood. Studies reported here reveal that CD4 ligation initiates p56lck activation and renders human peripheral T cells and HPB-ALL cells hyporesponsive to Ag receptor stimulation, as indicated by the failure of TCR binding ligands to induce either protein tyrosine phosphorylation or elevation of intracellular-free calcium concentration. To approach the possibility that p56lck-mediated tyrosine phosphorylation of specific sites within TCR zeta-chain might be involved in the gp120-induced TCR signaling defect, we tested the kinase's ability to phosphorylate various zeta peptides. Kinetics analyses indicate that peptides derived from the in vitro autophosphorylation site of p56lck Y394 and two sites within zeta, Y84, and Y152, are equally effective substrates for p56lck, whereas p56fyn prefers a substrate peptide derived from a different site within zeta, Y142. Although these data are consistent with the possibility that gp120-mediated signal disruption of TCR could be due to p56lck phosphorylation of Y84 and Y152 residues within zeta, further experiments revealed that gp120 does not induce detectable zeta tyrosine phosphorylation under conditions in which it disrupts TCR signaling. These data indicate that gp120 can induce uncoupling of TCR from the earliest events in signal transduction and that this effect can be mediated by a mechanism other than tyrosine phosphorylation of TCR zeta-chain.

摘要

HIV的gp120与CD4结合会抑制TCR功能。这种无反应效应的分子机制尚未完全明了。此处报道的研究显示,CD4连接启动p56lck激活,并使人外周血T细胞和HPB-ALL细胞对Ag受体刺激反应低下,这表现为TCR结合配体无法诱导蛋白酪氨酸磷酸化或细胞内游离钙浓度升高。为探讨p56lck介导的TCR ζ链内特定位点的酪氨酸磷酸化可能参与gp120诱导的TCR信号缺陷这一可能性,我们检测了该激酶磷酸化各种ζ肽段的能力。动力学分析表明,源自p56lck Y394体外自身磷酸化位点以及ζ链内的两个位点Y84和Y152的肽段,是p56lck同等有效的底物,而p56fyn更倾向于源自ζ链内另一个位点Y142的底物肽段。尽管这些数据与gp120介导的TCR信号破坏可能是由于ζ链内Y84和Y152残基的p56lck磷酸化这一可能性相符,但进一步实验显示,在破坏TCR信号的条件下,gp120不会诱导可检测到的ζ酪氨酸磷酸化。这些数据表明,gp120可诱导TCR与信号转导的最早事件解偶联,且这种效应可由TCR ζ链酪氨酸磷酸化以外的机制介导。

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