LAG-3 sustains TOX expression and regulates the CD94/NKG2-Qa-1b axis to govern exhausted CD8 T cell NK receptor expression and cytotoxicity

LAG-3 维持 TOX 表达并调节 CD94/NKG2-Qa-1b 轴,从而控制耗竭 CD8 T 细胞 NK 受体的表达和细胞毒性。

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作者:Shin Foong Ngiow ,Sasikanth Manne ,Yinghui Jane Huang ,Tarek Azar ,Zeyu Chen ,Divij Mathew ,Qingzhou Chen ,Omar Khan ,Jennifer E Wu ,Victor Alcalde ,Ahron J Flowers ,Sean McClain ,Amy E Baxter ,Makoto Kurachi ,Junwei Shi ,Alexander C Huang ,Josephine R Giles ,Arlene H Sharpe ,Dario A A Vignali ,E John Wherry

Abstract

Exhausted CD8 T (Tex) cells in chronic viral infection and cancer have sustained co-expression of inhibitory receptors (IRs). Tex cells can be reinvigorated by blocking IRs, such as PD-1, but synergistic reinvigoration and enhanced disease control can be achieved by co-targeting multiple IRs including PD-1 and LAG-3. To dissect the molecular changes intrinsic when these IR pathways are disrupted, we investigated the impact of loss of PD-1 and/or LAG-3 on Tex cells during chronic infection. These analyses revealed distinct roles of PD-1 and LAG-3 in regulating Tex cell proliferation and effector functions, respectively. Moreover, these studies identified an essential role for LAG-3 in sustaining TOX and Tex cell durability as well as a LAG-3-dependent circuit that generated a CD94/NKG2+ subset of Tex cells with enhanced cytotoxicity mediated by recognition of the stress ligand Qa-1b, with similar observations in humans. These analyses disentangle the non-redundant mechanisms of PD-1 and LAG-3 and their synergy in regulating Tex cells.

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