首页> 美国卫生研究院文献>other >The protein tyrosine phosphatase PTPN4/PTP-MEG1 an enzyme capable of dephosphorylating the TCR ITAMs and regulating NF-κB is dispensable for T cell development and/or T cell effector functions
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The protein tyrosine phosphatase PTPN4/PTP-MEG1 an enzyme capable of dephosphorylating the TCR ITAMs and regulating NF-κB is dispensable for T cell development and/or T cell effector functions

机译:酪氨酸磷酸酶PTPN4 / PTP-MEG1是一种能够使TCR ITAM脱磷酸并调节NF-κB的酶可用于T细胞发育和/或T细胞效应子功能

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摘要

T cell receptor signaling processes are controlled by the integrated actions of families of protein tyrosine kinases (PTKs) and protein tyrosine phosphatases (PTPases). Several distinct cytosolic protein tyrosine phosphatases have been described that are able to negatively regulate TCR signaling pathways, including SHP-1, SHP-2, PTPH1, and PEP. Using PTPase substrate-trapping mutants and wild type enzymes, we determined that PTPN4/PTP-MEG1, a PTPH1-family member, could complex and dephosphorylate the ITAMs of the TCR ζ subunit. In addition, the substrate-trapping derivative augmented basal and TCR-induced activation of NF-κB in T cells. To characterize the contribution of this PTPase in T cells, we developed PTPN4-deficient mice. T cell development and TCR signaling events were comparable between wild type and PTPN4-deficient animals. The magnitude and duration of TCR-regulated ITAM phosphorylation, as well as overall protein phosphorylation, was unaltered in the absence of PTPN4. Finally, Th1- and Th2-derived cytokines and in vivo immune responses to Listeria monocytogeneswere equivalent between wild type and PTPN4-deficient mice. These findings suggest that additional PTPases are involved in controlling ITAM phosphorylations.
机译:T细胞受体信号传导过程受蛋白质酪氨酸激酶(PTKs)和蛋白质酪氨酸磷酸酶(PTPases)家族的整合作用控制。已经描述了几种能够负调节TCR信号通路的不同的胞质蛋白酪氨酸磷酸酶,包括SHP-1,SHP-2,PTPH1和PEP。使用PTPase捕获底物的突变体和野生型酶,我们确定PTPN1家族成员PTPN4 / PTP-MEG1可以使TCRζ亚基的ITAM复杂化和去磷酸化。此外,捕获底物的衍生物增强了T细胞中基础和TCR诱导的NF-κB活化。为了表征这种PTPase在T细胞中的作用,我们开发了PTPN4缺陷小鼠。在野生型和PTPN4缺陷动物之间,T细胞发育和TCR信号转导事件相当。在没有PTPN4的情况下,TCR调节的ITAM磷酸化的程度和持续时间以及总的蛋白质磷酸化没有改变。最后,在野生型和PTPN4缺陷型小鼠之间,Th1和Th2衍生的细胞因子以及对单核细胞增生性李斯特菌的体内免疫反应是相同的。这些发现表明,其他PTPases参与控制ITAM磷酸化。

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