Inter-tissue communication of mitochondrial stress and metabolic health.

Hanlin Zhang, Xinyu Li, Wudi Fan, Sentibel Pandovski, Ye Tian, Andrew Dillin
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引用次数: 2

Abstract

Mitochondria function as a hub of the cellular metabolic network. Mitochondrial stress is closely associated with aging and a variety of diseases, including neurodegeneration and cancer. Cells autonomously elicit specific stress responses to cope with mitochondrial stress to maintain mitochondrial homeostasis. Interestingly, mitochondrial stress responses may also be induced in a non-autonomous manner in cells or tissues that are not directly experiencing such stress. Such non-autonomous mitochondrial stress responses are mediated by secreted molecules called mitokines. Due to their significant translational potential in improving human metabolic health, there has been a surge in mitokine-focused research. In this review, we summarize the findings regarding inter-tissue communication of mitochondrial stress in animal models. In addition, we discuss the possibility of mitokine-mediated intercellular mitochondrial communication originating from bacterial quorum sensing.

Abstract Image

Abstract Image

线粒体应激与代谢健康的组织间通讯。
线粒体是细胞代谢网络的中枢。线粒体应激与衰老和包括神经变性和癌症在内的多种疾病密切相关。细胞自主地引发特定的应激反应,以应对线粒体应激,维持线粒体稳态。有趣的是,线粒体应激反应也可能在没有直接经历这种应激的细胞或组织中以非自主的方式诱导。这种非自主的线粒体应激反应是由称为分裂因子的分泌分子介导的。由于它们在改善人类代谢健康方面具有重要的转化潜力,因此以丝分裂因子为重点的研究激增。在这篇综述中,我们总结了关于线粒体应激在动物模型中的组织间通讯的发现。此外,我们讨论了起源于细菌群体感应的分裂因子介导的细胞间线粒体通讯的可能性。
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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