首页> 美国卫生研究院文献>The Journal of Experimental Medicine >T Cell Development and T Cell Responses in Mice with Mutations Affecting Tyrosines 292 or 315 of the Zap-70 Protein Tyrosine Kinase
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T Cell Development and T Cell Responses in Mice with Mutations Affecting Tyrosines 292 or 315 of the Zap-70 Protein Tyrosine Kinase

机译:小鼠的T细胞发育和T细胞反应与影响Zap-70蛋白酪氨酸激酶的酪氨酸292或315的突变。

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摘要

After stimulation of the T cell receptor (TCR), the tyrosine residues 292 and 315 in interdomain B of the protein tyrosine kinase ZAP-70 become phosphorylated and plausibly function as docking sites for Cbl and Vav1, respectively. The two latter proteins have been suggested to serve as substrates for ZAP-70 and to fine-tune its function. To address the role of these residues in T cell development and in the function of primary T cells, we have generated mice that express ZAP-70 molecules with Tyr to Phe substitution at position 292 (Y292F) or 315 (Y315F). When analyzed in a sensitized TCR transgenic background, the ZAP-70 Y315F mutation reduced the rate of positive selection and delayed the occurrence of negative selection. Furthermore, this mutation unexpectedly affected the constitutive levels of the CD3-ζ p21 phosphoisoform. Conversely, the ZAP-70 Y292F mutation upregulated proximal events in TCR signaling and allowed more T cells to produce interleukin 2 and interferon γ in response to a given dose of antigen. The observation that ZAP-70 Y292F T cells have a slower rate of ligand-induced TCR downmodulation suggests that Y292 is likely involved in regulating the duration activated TCR reside at the cell surface. Furthermore, we showed that Y292 and Y315 are dispensable for the TCR-induced tyrosine phosphorylation of Cbl and Vav1, respectively. Therefore, other molecules present in the TCR signaling cassette act as additional adaptors for Cbl and Vav1. The present in vivo analyses extend previous data based on transformed T cell lines and suggest that residue Y292 plays a role in attenuation of TCR signaling, whereas residue Y315 enhances ZAP-70 function.
机译:刺激T细胞受体(TCR)后,蛋白酪氨酸激酶ZAP-70的域间B中的酪氨酸残基292和315被磷酸化,并有可能分别充当Cbl和Vav1的停靠位。已建议后者的两种蛋白质充当ZAP-70的底物并微调其功能。为了解决这些残基在T细胞发育和原代T细胞功能中的作用,我们生成了小鼠,它们表达的ZAP-70分子在292位(Y292F)或315位(Y315F)具有Tyr到Phe取代。当在致敏的TCR转基因背景中进行分析时,ZAP-70 Y315F突变会降低阳性选择率并延迟阴性选择的发生。此外,这种突变出乎意料地影响了CD3-ζp21磷酸同工型的组成水平。相反,ZAP-70 Y292F突变上调了TCR信号传导中的近端事件,并允许更多的T细胞响应给定剂量的抗原产生白介素2和干扰素γ。 ZAP-70 Y292F T细胞具有较慢的配体诱导的TCR下调速率,这一发现表明Y292可能参与调节活化TCR在细胞表面停留的时间。此外,我们表明Y292和Y315分别是TCR诱导的Cbl和Vav1酪氨酸磷酸化所必需的。因此,TCR信号传导盒中存在的其他分子充当Cbl和Vav1的额外衔接子。目前的体内分析扩展了基于转化的T细胞系的先前数据,并提示残基Y292在TCR信号转导的衰减中起作用,而残基Y315增强ZAP-70的功能。

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