Zhang Linxia, Zhang Anli, Zhu Xinyu, Tian Xinmei, Guo Jiaohan, He Qian, Zhu Lingyan, Yuan Songhua, Zhao Chen, Zhang Xiaoyan, Xu Jianqing
Shanghai Public Health Clinical Center, Fudan University, Shanghai, China.
Department of Pathology, University of Texas Southwestern Medical Center, Dallas, TX.
J Immunol. 2023 Nov 1;211(9):1367-1375. doi: 10.4049/jimmunol.2200792.
A better understanding of the regulatory mechanisms governing the development of memory CD8+ T cells could provide instructive insights into vaccination strategies and T cell-based immunotherapies. In this article, we showed that CD160 surface protein is required for CD8+ T cell memory formation. In the response to acute lymphocytic choriomeningitis virus infection in a mouse model, CD160 ablation resulted in the failure of the development of all three memory CD8+ T cell subsets (central, effective, and tissue-resident memory), concomitant with a skewed differentiation into short-lived effector T cells. Such memory-related defect was manifested by a diminished protection from viral rechallenge. Mechanistically, CD160 deficiency led to downregulation of 4-1BB in activated CD8+ T cells, which contributes to the impaired cell survival and decreased respiratory capacity. The nexus between CD160 and 4-1BB was substantiated by the observation that ectopic introduction of 4-1BB was able to largely complement the loss of CD160 in memory CD8+ T cell development. Collectively, our studies discovered that CD160, once thought to be a coinhibitor of T cell signaling, is an essential promoter of memory CD8+ T cell development via activation of the costimulatory molecule 4-1BB.
更好地理解调控记忆性CD8 + T细胞发育的机制,可为疫苗接种策略和基于T细胞的免疫疗法提供有益的见解。在本文中,我们表明CD160表面蛋白是CD8 + T细胞记忆形成所必需的。在小鼠模型对急性淋巴细胞性脉络丛脑膜炎病毒感染的应答中,CD160缺失导致所有三个记忆性CD8 + T细胞亚群(中枢、效应和组织驻留记忆)发育失败,同时偏向分化为短命效应T细胞。这种与记忆相关的缺陷表现为对病毒再次攻击的保护作用减弱。从机制上讲,CD160缺陷导致活化的CD8 + T细胞中4-1BB下调,这导致细胞存活受损和呼吸能力下降。CD160与4-1BB之间的联系通过以下观察得到证实:异位引入4-1BB能够在很大程度上弥补记忆性CD8 + T细胞发育中CD160的缺失。总体而言,我们的研究发现,CD160曾被认为是T细胞信号传导的共抑制因子,现在发现它是通过激活共刺激分子4-1BB来促进记忆性CD8 + T细胞发育的重要因子。