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The Reduced Oligomerization of MAVS Mediated by ROS Enhances the Cellular Radioresistance

机译:由ROS介导的MAVS的降低的寡聚化增强了细胞辐射血管

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Although the mitochondrial antiviral signaling protein (MAVS), located in the mitochondrial outmembrane, is believed to be a signaling adaptor with antiviral feature firstly, it has been shown that suppression of MAVS enhanced radioresistance. The mechanisms underlying this radioresistance remain unclear. Our current study demonstrated that knockdown of MAVS alleviated the radiation-induced mitochondrial dysfunction (mitochondrial membrane potential disruption and ATP production), downregulated the expressions of proapoptotic proteins, and reduced the generation of ROS in cells after irradiation. Furthermore, inhibition of mitochondrial ROS by the mitochondria-targeted antioxidant MitoQ reduced amounts of oligomerized MAVS after irradiation compared with the control group and also prevented the incidence of MN and increased the survival fraction of normal A549 cells after irradiation. To our knowledge, it is the first report to indicate that MAVS, an innate immune signaling molecule, is involved in radiation response via its oligomerization mediated by radiation-induced ROS, which may be a potential target for the precise radiotherapy or radioprotection.
机译:虽然位于线粒体外部的线粒体抗病毒信号蛋白(MAVS)被认为是具有抗病毒特征的信号适配器,但已经证明了MAVS增强了辐射抗体的抑制。这种放射座位率下面的机制仍然不清楚。我们目前的研究表明,MAV的敲低减轻了辐射诱导的线粒体功能障碍(线粒体膜势破坏和ATP生产),下调了促凋亡蛋白的表达,并在照射后减少了细胞中的ros的产生。此外,与对照组相比,线粒体靶向抗氧化型MITOQ减少了线粒体ROS的线粒体ROS的抑制剂,并且还防止了MN的发生率并增加了辐照后正常A549细胞的存活率。据我们所知,第一个表明MAVS是先天免疫信号分子的第一份报告通过其辐射诱导的ROS介导的寡聚化,这可能是精确放射疗法或放射保护的潜在靶标。

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