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CD8+ T细胞通过介导腺苷A2A受体与谷胱甘肽/GPX4之间的相互作用来维持抗肿瘤反应。

CD8+ T cells sustain antitumor response by mediating crosstalk between adenosine A2A receptor and glutathione/GPX4.

作者信息

Chen Siqi, Fan Jie, Xie Ping, Ahn Jihae, Fernandez Michelle, Billingham Leah K, Miska Jason, Wu Jennifer D, Wainwright Derek A, Fang Deyu, Sosman Jeffrey A, Wan Yong, Zhang Yi, Chandel Navdeep S, Zhang Bin

机构信息

Department of Medicine, Hematology/Oncology Division, Robert H. Lurie Comprehensive Cancer Center.

Department of Neurological Surgery.

出版信息

J Clin Invest. 2024 Mar 5;134(8):e170071. doi: 10.1172/JCI170071.

Abstract

Antitumor responses of CD8+ T cells are tightly regulated by distinct metabolic fitness. High levels of glutathione (GSH) are observed in the majority of tumors, contributing to cancer progression and treatment resistance in part by preventing glutathione peroxidase 4-dependent (GPX4-dependent) ferroptosis. Here, we show the necessity of adenosine A2A receptor (A2AR) signaling and the GSH/GPX4 axis in orchestrating metabolic fitness and survival of functionally competent CD8+ T cells. Activated CD8+ T cells treated ex vivo with simultaneous inhibition of A2AR and lipid peroxidation acquire a superior capacity to proliferate and persist in vivo, demonstrating a translatable means to prevent ferroptosis in adoptive cell therapy. Additionally, we identify a particular cluster of intratumoral CD8+ T cells expressing a putative gene signature of GSH metabolism (GMGS) in association with clinical response and survival across several human cancers. Our study addresses a key role of GSH/GPX4 and adenosinergic pathways in fine-tuning the metabolic fitness of antitumor CD8+ T cells.

摘要

CD8+ T细胞的抗肿瘤反应受到不同代谢适应性的严格调控。在大多数肿瘤中都观察到高水平的谷胱甘肽(GSH),这在一定程度上通过阻止谷胱甘肽过氧化物酶4依赖性(GPX4依赖性)铁死亡促进了癌症进展和治疗抗性。在此,我们展示了腺苷A2A受体(A2AR)信号传导以及GSH/GPX4轴在协调功能健全的CD8+ T细胞的代谢适应性和存活中的必要性。体外同时抑制A2AR和脂质过氧化处理的活化CD8+ T细胞在体内获得了更强的增殖和存活能力,这证明了在过继性细胞治疗中预防铁死亡的一种可转化方法。此外,我们在几种人类癌症中鉴定出了一组特定的肿瘤内CD8+ T细胞,它们表达与临床反应和生存相关的GSH代谢推定基因特征(GMGS)。我们的研究揭示了GSH/GPX4和腺苷能途径在微调抗肿瘤CD8+ T细胞代谢适应性中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9d0/11014673/f91ce340da39/jci-134-170071-g017.jpg

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