Yoo Youngbum, Yeon MyeongHoon, Yoon Mee-Sup, Seo Young-Kyo
Aging Convergence Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Daejeon, 34141, Republic of Korea.
Department of Molecular Medicine, College of Medicine, Gachon University, Incheon, 21999, Republic of Korea.
Cell Commun Signal. 2025 Jan 21;23(1):36. doi: 10.1186/s12964-025-02032-2.
Cardiolipin, a unique phospholipid predominantly present in the inner mitochondrial membrane, is critical for maintaining mitochondrial integrity and function. Its dimeric structure and role in supporting mitochondrial dynamics, energy production, and mitophagy make it indispensable for skeletal muscle health. This review provides a comprehensive overview of cardiolipin biosynthesis, remodeling processes, and essential functions within mitochondria. We explore the influences of cardiolipin on the stability of the mitochondrial complexes, cristae formation, and calcium handling, all of which are vital for efficient oxidative phosphorylation and muscle contraction. Skeletal muscle, with its high energy demands, is particularly dependent on cardiolipin for optimal performance. We discuss the impact of aging on cardiolipin levels, which correlates with a decline in mitochondrial function and muscle mass, contributing to conditions such as sarcopenia. Furthermore, we examined the relationship between cardiolipin and endurance exercise, highlighting the effects of exercise-induced increase in cardiolipin levels on the improvement of mitochondrial function and muscle health. The role of Crls1 in cardiolipin synthesis has been emphasized as a potential therapeutic target for the treatment of sarcopenia. Increasing cardiolipin levels through gene therapy, pharmacological interventions, or specific exercise and nutritional strategies holds promise for mitigating muscle atrophy and promoting muscle regeneration. By focusing on the multifaceted role of cardiolipin in mitochondria and muscle health, we aimed to provide new insights into therapeutic approaches for enhancing muscle function and combating age-related muscle decline.
心磷脂是一种主要存在于线粒体内膜的独特磷脂,对维持线粒体的完整性和功能至关重要。其双聚体结构以及在支持线粒体动力学、能量产生和线粒体自噬方面的作用使其成为骨骼肌健康不可或缺的因素。本综述全面概述了心磷脂的生物合成、重塑过程以及在线粒体内的重要功能。我们探讨了心磷脂对线粒体复合物稳定性、嵴形成和钙处理的影响,所有这些对于有效的氧化磷酸化和肌肉收缩都至关重要。骨骼肌因其高能量需求,尤其依赖心磷脂来实现最佳性能。我们讨论了衰老对心磷脂水平的影响,这与线粒体功能和肌肉质量的下降相关,导致诸如肌肉减少症等情况。此外,我们研究了心磷脂与耐力运动之间的关系,强调了运动诱导的心磷脂水平升高对改善线粒体功能和肌肉健康的作用。已强调Crls1在心磷脂合成中的作用是治疗肌肉减少症的潜在治疗靶点。通过基因治疗、药物干预或特定的运动和营养策略提高心磷脂水平有望减轻肌肉萎缩并促进肌肉再生。通过关注心磷脂在线粒体和肌肉健康中的多方面作用,我们旨在为增强肌肉功能和对抗与年龄相关的肌肉衰退的治疗方法提供新的见解。