Picca Anna, Guerra Flora, Calvani Riccardo, Romano Roberta, Coelho-Junior Hélio José, Bucci Cecilia, Leeuwenburgh Christiaan, Marzetti Emanuele
Fondazione Policlinico Universitario "Agostino Gemelli" IRCCS, Rome, Italy.
Department of Biological and Environmental Sciences and Technologies, Università del Salento, Lecce, Italy.
Semin Cell Dev Biol. 2023 Jul 15;143:37-45. doi: 10.1016/j.semcdb.2022.03.023. Epub 2022 Mar 30.
Mitochondrial remodeling is crucial to meet the bioenergetic demand to support muscle contractile activity during daily tasks and muscle regeneration following injury. A set of mitochondrial quality control (MQC) processes, including mitochondrial biogenesis, dynamics, and mitophagy, are in place to maintain a well-functioning mitochondrial network and support muscle regeneration. Alterations in any of these pathways compromises mitochondrial quality and may potentially lead to impaired myogenesis, defective muscle regeneration, and ultimately loss of muscle function. Among MQC processes, mitophagy has gained special attention for its implication in the clearance of dysfunctional mitochondria via crosstalk with the endo-lysosomal system, a major cell degradative route. Along this pathway, additional opportunities for mitochondrial disposal have been identified that may also signal at the systemic level. This communication occurs via inclusion of mitochondrial components within membranous shuttles named mitochondrial-derived vesicles (MDVs). Here, we discuss MDV generation and release as a mitophagy-complementing route for the maintenance of mitochondrial homeostasis in skeletal myocytes. We also illustrate the possible role of muscle-derived MDVs in immune signaling during muscle remodeling and adaptation.
线粒体重塑对于满足生物能量需求至关重要,以支持日常任务期间的肌肉收缩活动以及损伤后的肌肉再生。一系列线粒体质量控制(MQC)过程,包括线粒体生物发生、动态变化和线粒体自噬,共同维持线粒体网络的正常运作并支持肌肉再生。这些途径中任何一个发生改变都会损害线粒体质量,并可能导致肌生成受损、肌肉再生缺陷,最终导致肌肉功能丧失。在MQC过程中,线粒体自噬因其通过与细胞内主要降解途径——内溶酶体系统相互作用清除功能失调的线粒体而备受关注。沿着这条途径,已发现线粒体处置的其他机会,这些机会也可能在系统水平发出信号。这种通讯通过将线粒体成分包含在名为线粒体衍生囊泡(MDV)的膜性穿梭体中来实现。在此,我们讨论MDV的产生和释放,这是一种补充线粒体自噬的途径,用于维持骨骼肌细胞中的线粒体稳态。我们还阐述了肌肉衍生的MDV在肌肉重塑和适应过程中的免疫信号传导中可能发挥的作用。