Cross-Organ Mitochondrial Communication in Stress and Disease.

IF 13.1 1区 医学 Q1 PHARMACOLOGY & PHARMACY
Koning Shen, Jenni Durieux, Andrew Dillin
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引用次数: 0

Abstract

Growing evidence points to mitochondria as not just the "powerhouse of the cell" but as a major cellular hub for signaling. Mitochondria use signaling pathways to communicate with other organelles within the cell or organs within an organism to regulate stress response, metabolic, immune, and longevity pathways. These communication pathways are carried out by mitokine signaling molecules encompassing metabolites, lipids, proteins, and even whole mitochondrial organelles themselves. In this review, we focus on the communication pathways mitochondria use to communicate between different organs in invertebrates, mammalian models, and humans. We cover the molecular events that trigger communication, the signaling mechanisms themselves, and the impact this communication has on organismal health in the context of stress and disease. Further understanding of cross-organ mitochondrial communication pathways will inform the design of therapeutics that take advantage of their protective effects to treat diseases associated with mitochondrial dysfunction.

应激和疾病中的跨器官线粒体通讯。
越来越多的证据表明,线粒体不仅是“细胞的发电站”,而且是细胞信号传递的主要枢纽。线粒体通过信号通路与细胞内其他细胞器或器官进行沟通,调节应激反应、代谢、免疫和长寿途径。这些通讯途径是由包含代谢物、脂质、蛋白质甚至整个线粒体细胞器本身的丝裂因子信号分子进行的。在这篇综述中,我们主要关注线粒体在无脊椎动物、哺乳动物模型和人类不同器官之间的通讯途径。我们涵盖了触发通信的分子事件,信号机制本身,以及这种通信在压力和疾病背景下对机体健康的影响。对跨器官线粒体通讯途径的进一步了解,将为利用其保护作用来治疗线粒体功能障碍相关疾病的治疗方法的设计提供信息。
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来源期刊
CiteScore
27.80
自引率
0.00%
发文量
53
期刊介绍: Since 1961, the Annual Review of Pharmacology and Toxicology has been a comprehensive resource covering significant developments in pharmacology and toxicology. The journal encompasses various aspects, including receptors, transporters, enzymes, chemical agents, drug development science, and systems like the immune, nervous, gastrointestinal, cardiovascular, endocrine, and pulmonary systems. Special topics are also featured in this annual review.
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