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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Mitochondria Know No Boundaries: Mechanisms and Functions of Intercellular Mitochondrial Transfer
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Mitochondria Know No Boundaries: Mechanisms and Functions of Intercellular Mitochondrial Transfer

机译:线粒体无边界:细胞间线粒体转移的机制和功能。

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Mitochondria regulate multiple cell processes, including calcium signaling, apoptosis and cell metabolism. Mitochondria contain their own circular genome encoding selected subunits of the oxidative phosphorylation complexes. Recent findings reveal that, in addition to being maternally inherited, mitochondria can traverse cell boundaries and thus be horizontally transferred between cells. Although the physiological relevance of this phenomenon is still under debate, mitochondria uptake rescues mitochondrial respiration defects in recipient cells and regulates signaling, proliferation or chemotherapy resistance in vitro and in vivo. In this review, we outline the pathophysiological consequences of horizontal mitochondrial transfer and offer a perspective on the cellular and molecular mechanisms mediating their intercellular transmission, including tunneling nanotubes, extracellular vesicles, cellular fusion and GAP junctions. The physiological relevance of mitochondrial transfer and the potential therapeutic application of this exchange for treating mitochondrial-related diseases are discussed.
机译:线粒体调节多种细胞过程,包括钙信号传导,细胞凋亡和细胞代谢。线粒体包含其自身的环状基因组,其编码氧化磷酸化复合物的选定亚基。最新发现表明,线粒体除了可以母本遗传外,还可以穿越细胞边界,因此可以在细胞之间水平转移。尽管这种现象的生理相关性仍在争论中,但线粒体的吸收可以挽救受体细胞中的线粒体呼吸缺陷,并在体内和体外调节信号传导,增殖或化疗耐药性。在这篇综述中,我们概述了水平线粒体转移的病理生理后果,并提供了介导其间传递的细胞和分子机制的观点,包括隧穿纳米管,细胞外囊泡,细胞融合和GAP连接。讨论了线粒体转移的生理相关性以及这种交换在治疗线粒体相关疾病中的潜在治疗应用。

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