MAVS Positively Regulates Mitochondrial Integrity and Metabolic Fitness in B Cells.

Hongsheng Wang, Wenxiang Sun, Javier Traba, Juan Wu, Chen-Feng Qi, Laura Amo, Hemanta K Kole, Bethany Scott, Komudi Singh, Michael N Sack, Silvia Bolland
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Abstract

Activated B cells experience metabolic changes that require mitochondrial remodeling, in a process incompletely defined. In this study, we report that mitochondrial antiviral signaling protein (MAVS) is involved in BCR-initiated cellular proliferation and prolonged survival. MAVS is well known as a mitochondrial-tethered signaling adaptor with a central role in viral RNA-sensing pathways that induce type I IFN. The role of MAVS downstream of BCR stimulation was recognized in absence of IFN, indicative of a path for MAVS activation that is independent of viral infection. Mitochondria of BCR-activated MAVS-deficient mouse B cells exhibited a damaged phenotype including disrupted mitochondrial morphology, excess mitophagy, and the temporal progressive blunting of mitochondrial oxidative capacity with mitochondrial hyperpolarization and cell death. Costimulation of MAVS-deficient B cells with anti-CD40, in addition to BCR stimulation, partially corrected the mitochondrial structural defects and functionality. Our data reveal a (to our knowledge) previously unrecognized role of MAVS in controlling the metabolic fitness of B cells, most noticeable in the absence of costimulatory help.

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MAVS积极调节B细胞线粒体完整性和代谢适应性。
活化的B细胞经历代谢变化,需要线粒体重塑,这一过程尚未完全确定。在这项研究中,我们报道了线粒体抗病毒信号蛋白(MAVS)参与BCR启动的细胞增殖和延长生存期。众所周知,MAVS是一种线粒体系链信号适配器,在诱导I型IFN的病毒RNA传感途径中发挥核心作用。MAVS在BCR刺激下游的作用在没有IFN的情况下被识别,这表明MAVS激活的途径独立于病毒感染。BCR激活的MAVS缺陷小鼠B细胞的线粒体表现出受损表型,包括线粒体形态破坏、线粒体自噬过多,以及线粒体氧化能力随线粒体超极化和细胞死亡而暂时逐渐减弱。除了BCR刺激外,用抗CD40共刺激MAVS缺陷的B细胞,部分纠正了线粒体结构缺陷和功能。我们的数据揭示了(据我们所知)MAVS在控制B细胞代谢适应度方面的一个以前未被认识的作用,在缺乏共刺激帮助的情况下最为明显。
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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