STEM Program, Science Department, Chaoyang KaiWen Academy, Beijing 100018, China.
Bioenergetics Department, Belozersky Research Institute for Physico-Chemical Biology, Lomonosov Moscow State University, 119992 Moscow, Russia.
Cells. 2021 Jul 8;10(7):1721. doi: 10.3390/cells10071721.
The present review is an attempt to conceptualize a contemporary understanding about the roles that cardiolipin, a mitochondrial specific conical phospholipid, and non-bilayer structures, predominantly found in the inner mitochondrial membrane (IMM), play in mitochondrial bioenergetics. This review outlines the link between changes in mitochondrial cardiolipin concentration and changes in mitochondrial bioenergetics, including changes in the IMM curvature and surface area, cristae density and architecture, efficiency of electron transport chain (ETC), interaction of ETC proteins, oligomerization of respiratory complexes, and mitochondrial ATP production. A relationship between cardiolipin decline in IMM and mitochondrial dysfunction leading to various diseases, including cardiovascular diseases, is thoroughly presented. Particular attention is paid to the targeting of cardiolipin by Szeto-Schiller tetrapeptides, which leads to rejuvenation of important mitochondrial activities in dysfunctional and aging mitochondria. The role of cardiolipin in triggering non-bilayer structures and the functional roles of non-bilayer structures in energy-converting membranes are reviewed. The latest studies on non-bilayer structures induced by cobra venom peptides are examined in model and mitochondrial membranes, including studies on how non-bilayer structures modulate mitochondrial activities. A mechanism by which non-bilayer compartments are formed in the apex of cristae and by which non-bilayer compartments facilitate ATP synthase dimerization and ATP production is also presented.
本文试图从概念上理解心磷脂(一种存在于线粒体中的特殊锥形磷脂)和非双层结构(主要存在于线粒体内膜)在心磷脂和非双层结构在粒体生物能学中的作用。本文概述了线粒体心磷脂浓度变化与线粒体生物能学变化之间的联系,包括线粒体内膜曲率和表面积、嵴密度和结构、电子传递链(ETC)效率、ETC 蛋白相互作用、呼吸复合物寡聚化以及线粒体 ATP 产生的变化。深入探讨了线粒体内膜心磷脂减少与导致各种疾病(包括心血管疾病)的线粒体功能障碍之间的关系。特别关注 Szeto-Schiller 四肽靶向线粒体内膜心磷脂,这导致功能失调和衰老线粒体中重要的线粒体活性的恢复。本文还回顾了心磷脂触发非双层结构的作用以及非双层结构在能量转换膜中的功能作用。检查了眼镜蛇毒液肽在模型和线粒体膜中诱导非双层结构的最新研究,包括研究非双层结构如何调节线粒体活性。还提出了一种在嵴顶形成非双层隔室的机制,以及非双层隔室如何促进 ATP 合酶二聚化和 ATP 产生的机制。