Mitochondrial mechanisms by which gasotransmitters (H2S, NO and CO) protect cardiovascular system against hypoxia.

Irina Shemarova, Vladimir Nesterov, Larisa Emelyanova, Sergey Korotkov
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引用次数: 6

Abstract

Over past few years, there has been a dramatic increase in studying physiological mechanisms of the activity of various signaling low-molecular molecules that directly or indirectly initiate adaptive changes in the cardiovascular system cells (CVSC) to hypoxia. These molecules include biologically active endogenous gases or gasotransmitters (H2S, NO and CO) that influence on many cellular processes, including mitochondrial biogenesis, oxidative phosphorylation, K+/Ca2+ exchange, contractility of cardiomyocytes (CM) and vascular smooth muscle cells (VSMC) under conditions of oxygen deficiency. The present review focuses on the mechanistic role of the gasotransmitters (NO, H2S, CO) in cardioprotection. The structural components of these mechanisms involve mitochondrial enzyme complexes and redox signal proteins, K+ and Ca2+ channels, and mitochondrial permeability transition pore (MPTP) that have been considered as the final molecular targets of mechanisms underlying antioxidant and mild mitochondrial uncoupling effects, preconditioning, vasodilatation and adaptation to hypoxia. In this article, we have reviewed recent findings on the gasotransmitters and proposed a unifying model of mitochondrial mechanisms of cardioprotection.

气体递质(H2S, NO和CO)保护心血管系统免受缺氧的线粒体机制。
近年来,人们对直接或间接启动心血管系统细胞(CVSC)缺氧适应性变化的各种信号传导低分子分子活性的生理机制的研究急剧增加。这些分子包括具有生物活性的内源性气体或气体递质(H2S、NO和CO),它们影响许多细胞过程,包括线粒体生物发生、氧化磷酸化、K+/Ca2+交换、缺氧条件下心肌细胞(CM)和血管平滑肌细胞(VSMC)的收缩性。现就一氧化氮、硫化氢、一氧化碳等气体递质在心脏保护中的作用机制作一综述。这些机制的结构成分包括线粒体酶复合物和氧化还原信号蛋白、K+和Ca2+通道以及线粒体通透性过渡孔(MPTP),它们被认为是抗氧化和轻度线粒体解偶联效应、预处理、血管舒张和缺氧适应机制的最终分子靶点。在本文中,我们回顾了气体递质的最新发现,并提出了线粒体心脏保护机制的统一模型。
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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