Center for Bone and Muscle Health, Faculty of Applied Health Sciences, Brock University, 1812 Sir Isaac Brock Way, St. Catharines, Ontario, L2S 3A1, Canada.
Physiol Rep. 2021 Mar;9(5):e14772. doi: 10.14814/phy2.14772.
Skeletal muscle, a highly active tissue, makes up 40% of the total body weight. This tissue relies on mitochondria for ATP production, calcium homeostasis, and programed cell death. Mitochondrial phospholipid composition, namely, cardiolipin (CL), influences the functional efficiency of mitochondrial proteins, specifically cytochrome c. The interaction of CL with cytochrome c in the presence of free radicals induces structural and functional changes promoting peroxidase activity and cytochrome c release, a key event in the initiation of apoptosis. The CL acyl chain degree of saturation has been implicated in the cytochrome c to cytochrome c peroxidase transition in liposomal models. However, mitochondrial membranes are composed of differing CL acyl chain composition. Currently, it is unclear how differing CL acyl chain composition utilizing liposomes will influence the cytochrome c form and function as a peroxidase. Thus, this study examined the role of CL acyl chain saturation within liposomes broadly reflecting the relative CL composition of mitochondrial membranes from healthy and dystrophic mouse muscle on cytochrome c conformation and function. Despite no differences in protein conformation or function between healthy and dystrophic liposomes, cytochrome c's affinity to CL increased with greater unsaturation. These findings suggest that increasing CL acyl chain saturation, as implicated in muscle wasting diseases, may not influence cytochrome c transformation and function as a peroxidase but may alter its interaction with CL, potentially impacting further downstream effects.
骨骼肌是一种高度活跃的组织,占人体总重量的 40%。该组织依赖于线粒体来产生 ATP、维持钙稳态和程序性细胞死亡。线粒体磷脂的组成,即心磷脂(CL),影响线粒体蛋白的功能效率,特别是细胞色素 c。在自由基存在的情况下,CL 与细胞色素 c 的相互作用会诱导结构和功能的变化,促进过氧化物酶的活性和细胞色素 c 的释放,这是细胞凋亡起始的关键事件。CL 酰基链饱和度已被牵连到在脂质体模型中细胞色素 c 向细胞色素 c 过氧化物酶的转变。然而,线粒体膜由不同的 CL 酰基链组成。目前,尚不清楚利用脂质体的不同 CL 酰基链组成将如何影响细胞色素 c 的形态和功能作为过氧化物酶。因此,本研究检查了 CL 酰基链饱和度在脂质体中的作用,这些脂质体广泛反映了健康和营养不良的小鼠肌肉中线粒体膜的相对 CL 组成对细胞色素 c 构象和功能的影响。尽管健康和营养不良的脂质体之间在蛋白质构象或功能上没有差异,但细胞色素 c 与 CL 的亲和力随着不饱和程度的增加而增加。这些发现表明,如在肌肉消耗疾病中所暗示的那样,增加 CL 酰基链饱和度可能不会影响细胞色素 c 作为过氧化物酶的转化和功能,但可能会改变其与 CL 的相互作用,从而可能影响进一步的下游效应。