首页> 美国卫生研究院文献>Molecular and Cellular Biology >Phosphorylation of a Tyrosine Residue on Zap70 by Lck and Its Subsequent Binding via an SH2 Domain May Be a Key Gatekeeper of T Cell Receptor Signaling In Vivo
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Phosphorylation of a Tyrosine Residue on Zap70 by Lck and Its Subsequent Binding via an SH2 Domain May Be a Key Gatekeeper of T Cell Receptor Signaling In Vivo

机译:Lck在Zap70上酪氨酸残基的磷酸化及其随后通过SH2域的结合可能是体内T细胞受体信号转导的关键关守

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摘要

The initiation of signaling in T lymphocytes in response to the binding of the T cell receptor (TCR) to cognate ligands is a key step in the emergence of adaptive immune responses. Conventional models posit that TCR signaling is initiated by the phosphorylation of receptor-associated immune receptor activation motifs (ITAMs). The cytoplasmic tyrosine kinase Zap70 binds to phosphorylated ITAMs, is subsequently activated, and then propagates downstream signaling. While evidence for such models is provided by experiments with cell lines, in vivo, Zap70 is bound to phosphorylated ITAMs in resting T cells. However, Zap70 is activated only upon TCR binding to cognate ligand. We report the results of computational studies of a new model for the initiation of TCR signaling that incorporates these in vivo observations. Importantly, the new model is shown to allow better and faster TCR discrimination between self-ligands and foreign ligands. The new model is consistent with many past experimental observations, and experiments that could further test the model are proposed.
机译:响应于T细胞受体(TCR)与同源配体的结合,T淋巴细胞中信号传导的启动是适应性免疫反应出现的关键步骤。传统模型认为,TCR信号传导是通过受体相关免疫受体激活基序(ITAM)的磷酸化来启动的。细胞质酪氨酸激酶Zap70与磷酸化的ITAM结合,随后被激活,然后传播下游信号。尽管通过细胞系实验为此类模型提供了证据,但在体内,Zap70与静止T细胞中的磷酸化ITAM结合。但是,Zap70仅在TCR与同源配体结合后才被激活。我们报告了纳入这些体内观察结果的TCR信号启动新模型的计算机研究的结果。重要的是,新模型显示出可以更好,更快地区分自身配体和外来配体之间的TCR。新模型与过去的许多实验观察结果一致,并提出了可以进一步测试该模型的实验。

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