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首页> 外文期刊>The journal of immunology >Reciprocal Regulation of SH3 and SH2 Domain Binding via Tyrosine Phosphorylation of a Common Site in CD3ε
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Reciprocal Regulation of SH3 and SH2 Domain Binding via Tyrosine Phosphorylation of a Common Site in CD3ε

机译:通过CD3ε中一个共同位点的酪氨酸磷酸化对SH3和SH2域结合的相互调节。

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摘要

Recruitment of cellular signaling proteins by the CD3 polypeptides of the TCR complex mediates T cell activation. We have screened a human Src homology 3 (SH3) domain phage display library for proteins that can bind to the proline-rich region of CD3ε. This screening identified Eps8L1 (epidermal growth factor receptor pathway substrate 8-like 1) together with the N-terminal SH3 domain of Nck1 and Nck2 as its preferred SH3 partners. Studies with recombinant proteins confirmed strong binding of CD3ε to Eps8L1 and Nck SH3 domains. CD3ε bound well also to Eps8 and Eps8L3, and modestly to Eps8L2, but not detectably to other SH3 domains tested. Interestingly, binding of Nck and Eps8L1 SH3 domains was mapped to a PxxDY motif that shared its tyrosine residue (Y166) with the ITAM of CD3ε. Phosphorylation of this residue abolished binding of Eps/Nck SH3 domains in peptide spot filter assays, as well as in cells cotransfected with a dominantly active Lck kinase. TCR ligation-induced binding and phosphorylation-dependent loss of binding were also demonstrated between Eps8L1 and endogenous CD3ε in Jurkat T cells. Thus, phosphorylation of Y166 serves as a molecular switch during T cell activation that determines the capacity of CD3ε to interact with either SH3 or SH2 domain-containing proteins.
机译:TCR复合物的CD3多肽对细胞信号蛋白的募集介导T细胞活化。我们已经筛选了人类Src同源性3(SH3)域噬菌体展示文库,寻找可以与CD3ε富含脯氨酸的区域结合的蛋白质。该筛选确定了Eps8L1(表皮生长因子受体途径底物8样1)以及Nck1和Nck2的N末端SH3结构域作为其首选SH3伴侣。对重组蛋白的研究证实了CD3ε与Eps8L1和Nck SH3结构域的强结合。 CD3ε也与Eps8和Eps8L3结合良好,适度与Eps8L2结合,但与其他测试的SH3结构域不可检测。有趣的是,Nck和Eps8L1 SH3域的结合被定位到与CD3ε的ITAM共享其酪氨酸残基(Y166)的PxxDY基序。该残基的磷酸化消除了在肽点滤器测定以及被显性活性Lck激酶共转染的细胞中Eps / Nck SH3结构域的结合。在Jurkat T细胞中Eps8L1和内源性CD3ε之间也证实了TCR连接诱导的结合和磷酸化依赖性结合的丧失。因此,Y166的磷酸化充当T细胞活化过程中的分子开关,决定了CD3ε与包含SH3或SH2域的蛋白质相互作用的能力。

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