首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Sts-2 Is a Phosphatase That Negatively Regulates Zeta-associated Protein (ZAP)-70 and T Cell Receptor Signaling Pathways
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Sts-2 Is a Phosphatase That Negatively Regulates Zeta-associated Protein (ZAP)-70 and T Cell Receptor Signaling Pathways

机译:Sts-2是一种磷酸酶可负调节Zeta相关蛋白(ZAP)-70和T细胞受体信号通路。

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摘要

T cell activity is controlled in large part by the T cell receptor (TCR). The TCR detects the presence of foreign pathogens and activates the T cell-mediated immune reaction. Numerous intracellular signaling pathways downstream of the TCR are involved in the process of T cell activation. Negative regulation of these pathways helps prevent excessive and deleterious T cell responses. Two homologous proteins, Sts-1 and Sts-2, have been shown to function as critical negative regulators of TCR signaling. The phosphoglycerate mutase-like domain of Sts-1 (Sts-1PGM) has a potent phosphatase activity that contributes to the suppression of TCR signaling. The function of Sts-2PGM as a phosphatase has been less clear, principally because its intrinsic enzyme activity has been difficult to detect. Here, we demonstrate that Sts-2 regulates the level of tyrosine phosphorylation on targets within T cells, among them the critical T cell tyrosine kinase Zap-70. Utilizing new phosphorylated substrates, we demonstrate that Sts-2PGM has clear, albeit weak, phosphatase activity. We further pinpoint Sts-2 residues Glu-481, Ser-552, and Ser-582 as specificity determinants, in that an Sts-2PGM triple mutant in which these three amino acids are altered to their counterparts in Sts-1PGM has substantially increased activity. Our results suggest that the phosphatase activities of both suppressor of TCR signaling homologues cooperate in a similar but independent fashion to help set the threshold for TCR-induced T cell activation.
机译:T细胞活性在很大程度上受T细胞受体(TCR)的控制。 TCR检测到外来病原体的存在并激活T细胞介导的免疫反应。 TCR下游的许多细胞内信号转导通路都参与T细胞活化过程。这些途径的负调控有助于防止过度和有害的T细胞反应。已经显示两种同源蛋白Sts-1和Sts-2充当TCR信号传导的关键负调控因子。 Sts-1(Sts-1PGM)的磷酸甘油酸酯突变酶样结构域具有有效的磷酸酶活性,有助于抑制TCR信号传导。 Sts-2PGM作为磷酸酶的功能尚不清楚,主要是因为其固有的酶活性难以检测。在这里,我们证明Sts-2调节T细胞内靶标上的酪氨酸磷酸化水平,其中关键的T细胞酪氨酸激酶Zap-70。利用新的磷酸化底物,我们证明了Sts-2PGM具有清晰的磷酸酶活性,尽管较弱。我们进一步确定Sts-2残基Glu-481,Ser-552和Ser-582作为特异性决定因素,因为其中这三个氨基酸被替换为Sts-1PGM中对应物的Sts-2PGM三重突变体的活性大大提高。我们的结果表明,TCR信号转导同源物的两种抑制剂的磷酸酶活性均以相似但独立的方式协同作用,以帮助设定TCR诱导的T细胞活化的阈值。

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