Key Laboratory of Bioresource Research and Development of Liaoning Province, College of Life Science and Health, Northeastern University, #195 Chuangxin Road, Hunnan Xinqu, Shenyang 110169, China.
Int J Mol Sci. 2023 Sep 25;24(19):14505. doi: 10.3390/ijms241914505.
The protein tyrosine phosphatase PTPN22 inhibits T cell activation by dephosphorylating some essential proteins in the T cell receptor (TCR)-mediated signaling pathway, such as the lymphocyte-specific protein tyrosine kinase (Lck), Src family tyrosine kinases Fyn, and the phosphorylation levels of Zeta-chain-associated protein kinase-70 (ZAP70). For the first time, we have successfully produced PTPN22 CS transgenic mice in which the tyrosine phosphatase activity of PTPN22 is suppressed. Notably, the number of thymocytes in the PTPN22 CS mice was significantly reduced, and the expression of cytokines in the spleen and lymph nodes was changed significantly. Furthermore, PTPN22 CS facilitated the positive and negative selection of developing thymocytes, increased the expression of the TCRαβ-CD3 complex on the thymus cell surface, and regulated their internalization and recycling. ZAP70, Lck, Phospholipase C gamma1(PLCγ1), and other proteins were observed to be reduced in PTPN22 CS mouse thymocytes. In summary, PTPN22 regulates TCR internalization and recycling via the modulation of the TCR signaling pathway and affects TCR expression on the T cell surface to regulate negative and positive selection. PTPN22 affected the development of the thymus, spleen, lymph nodes, and other peripheral immune organs in mice. Our study demonstrated that PTPN22 plays a crucial role in T cell development and provides a theoretical basis for immune system construction.
蛋白酪氨酸磷酸酶 PTPN22 通过去磷酸化 T 细胞受体(TCR)介导的信号通路中的一些必需蛋白,如淋巴细胞特异性蛋白酪氨酸激酶(Lck)、Src 家族酪氨酸激酶 Fyn 和 Zeta 链相关蛋白激酶-70(ZAP70),来抑制 T 细胞的激活。我们首次成功地生产了 PTPN22 CS 转基因小鼠,其中 PTPN22 的酪氨酸磷酸酶活性受到抑制。值得注意的是,PTPN22 CS 小鼠的胸腺细胞数量显著减少,脾脏和淋巴结中的细胞因子表达也发生了显著变化。此外,PTPN22 CS 促进了发育中的胸腺细胞的阳性和阴性选择,增加了胸腺细胞表面 TCRαβ-CD3 复合物的表达,并调节了它们的内化和再循环。在 PTPN22 CS 小鼠的胸腺细胞中观察到 ZAP70、Lck、磷脂酶 C gamma1(PLCγ1)和其他蛋白质的表达减少。总之,PTPN22 通过调节 TCR 信号通路来调节 TCR 的内化和再循环,影响 T 细胞表面的 TCR 表达,从而调节正负选择。PTPN22 影响了小鼠胸腺、脾脏、淋巴结和其他外周免疫器官的发育。我们的研究表明,PTPN22 在 T 细胞发育中起着至关重要的作用,为免疫系统的构建提供了理论依据。