ATP-elicited Cation Fluxes Promote Volume-regulated Anion Channel LRRC8/VRAC Transport cGAMP for Antitumor Immunity.

IF 3.6 3区 医学 Q2 IMMUNOLOGY
Li Wang, Limin Cao, Zhihong Li, Zhugui Shao, Xia Chen, Zhicheng Huang, Xiaoxiao He, Junke Zheng, Li Liu, Xin-Ming Jia, Hui Xiao
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引用次数: 0

Abstract

The cyclic GMP-AMP synthase (cGAS)-stimulator of IFN genes (STING) pathway is instrumental to antitumor immunity, yet the underlying molecular and cellular mechanisms are complex and still unfolding. A new paradigm suggests that cancer cells' cGAS-synthesized cGAMP can be transferred to tumor-infiltrating immune cells, eliciting STING-dependent IFN-β response for antitumor immunity. Nevertheless, how the tumor microenvironment may shape this process remains unclear. In this study, we found that extracellular ATP, an immune regulatory molecule widely present in the tumor microenvironment, can potentiate cGAMP transfer, thereby boosting the STING signaling and IFN-β response in murine macrophages and fibroblasts. Notably, genetic ablation or chemical inhibition of murine volume-regulation anion channel LRRC8/volume-regulated anion channel (VRAC), a recently identified cGAMP transporter, abolished ATP-potentiated cGAMP transfer and STING-dependent IFN-β response, revealing a crucial role of LRRC8/VRAC in the cross-talk of extracellular ATP and cGAMP. Mechanistically, ATP activation of the P2X family receptors triggered Ca2+ influx and K+ efflux, promoting reactive oxygen species production. Moreover, ATP-evoked K+ efflux alleviated the phosphorylation of VRAC's obligate subunit LRRC8A/SWELL1 on S174. Mutagenesis studies indicated that the phosphorylation of S174 on LRRC8A could act as a checkpoint for VRAC in the steady state and a rheostat of ATP responsiveness. In an MC38-transplanted tumor model, systemically blocking CD39 and ENPP1, hydroxylases of extracellular ATP and cGAMP, respectively, elevated antitumor NK, NKT, and CD8+ T cell responses and restrained tumor growth in mice. Altogether, this study establishes a crucial role of ATP in facilitating LRRC8/VRAC transport cGAMP in the tumor microenvironment and provides new insight into harnessing cGAMP transfer for antitumor immunity.

ATP激发的阳离子通量促进体积调节阴离子通道LRRC8/VRAC转运cGAMP以增强抗肿瘤免疫力
环GMP-AMP合成酶(cGAS)-IFN基因刺激器(STING)通路对抗肿瘤免疫非常重要,但其分子和细胞机制非常复杂,目前仍在研究之中。一种新的模式表明,癌细胞的 cGAS 合成的 cGAMP 可以转移到肿瘤浸润的免疫细胞,引起 STING 依赖性 IFN-β 反应,从而实现抗肿瘤免疫。然而,肿瘤微环境如何影响这一过程仍不清楚。在这项研究中,我们发现广泛存在于肿瘤微环境中的免疫调节分子细胞外 ATP 能增强 cGAMP 的传递,从而促进小鼠巨噬细胞和成纤维细胞的 STING 信号转导和 IFN-β 反应。值得注意的是,对最近发现的cGAMP转运体--小鼠体积调节阴离子通道LRRC8/体积调节阴离子通道(VRAC)进行基因消减或化学抑制后,ATP促进的cGAMP转运和STING依赖性IFN-β反应就会消失,这揭示了LRRC8/VRAC在细胞外ATP和cGAMP的交叉作用中的关键作用。从机理上讲,ATP 激活 P2X 家族受体会引发 Ca2+ 流入和 K+ 外流,促进活性氧的产生。此外,ATP诱发的K+外流减轻了VRAC必须亚基LRRC8A/SWELL1在S174上的磷酸化。突变研究表明,LRRC8A 上 S174 的磷酸化可作为稳态 VRAC 的检查点和 ATP 反应性的调节器。在 MC38 移植肿瘤模型中,系统阻断 CD39 和 ENPP1(分别是细胞外 ATP 和 cGAMP 的羟化酶)可提高小鼠的抗肿瘤 NK、NKT 和 CD8+ T 细胞反应并抑制肿瘤生长。总之,这项研究确定了 ATP 在肿瘤微环境中促进 LRRC8/VRAC 转运 cGAMP 的关键作用,并为利用 cGAMP 转运促进抗肿瘤免疫提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of immunology
Journal of immunology 医学-免疫学
CiteScore
8.20
自引率
2.30%
发文量
495
审稿时长
1 months
期刊介绍: The JI publishes novel, peer-reviewed findings in all areas of experimental immunology, including innate and adaptive immunity, inflammation, host defense, clinical immunology, autoimmunity and more. Special sections include Cutting Edge articles, Brief Reviews and Pillars of Immunology. The JI is published by The American Association of Immunologists (AAI)
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