Departamento de Biología Celular, Fisiología e Inmunología, Universidad de Córdoba, Campus de Excelencia Internacional Agroalimentario, CeiA3, Córdoba, Spain.
Departamento de Biología Celular, Fisiología e Inmunología, Universidad de Córdoba, Campus de Excelencia Internacional Agroalimentario, CeiA3, Córdoba, Spain; Rheumatology Service, Reina Sofia Hospital/ Maimonides Institute for Research in Biomedicine of Cordoba (IMIBIC)/University of Cordoba, Cordoba, Spain.
Free Radic Biol Med. 2023 Oct;207:144-160. doi: 10.1016/j.freeradbiomed.2023.07.012. Epub 2023 Jul 16.
Cytochrome b reductase 3 (CYB5R3) activates respiratory metabolism in cellular systems and exerts a prolongevity action in transgenic mice overexpressing this enzyme, mimicking some of the beneficial effects of calorie restriction. The aim of our study was to investigate the role of sex on metabolic adaptations elicited by CYB5R3 overexpression, and how key markers related with mitochondrial function are modulated in skeletal muscle, one of the major contributors to resting energy expenditure. Young CYB5R3 transgenic mice did not exhibit the striking adaptations in carbon metabolism previously detected in older animals. CYB5R3 was efficiently overexpressed and targeted to mitochondria in skeletal muscle from transgenic mice regardless sex. Overexpression significantly elevated NADH in both sexes, although differences were not statistically significant for NAD, and increased the abundance of cytochrome c and the fission protein DRP-1 in females but not in males. Moreover, while mitochondrial biogenesis and function markers (as TFAM, NRF-1 and cleaved SIRT3) were markedly upregulated by CYB5R3 overexpression in females, a downregulation was observed in males. Ultrastructural changes were also highlighted, with an increase in the number of mitochondria per surface unit, and in the size of intermyofibrillar mitochondria in transgenic females compared with their wild-type controls. Our results support that CYB5R3 overexpression upregulates markers consistent with enhanced mitochondrial biogenesis and function, and increases mitochondrial abundance in skeletal muscle, producing most of these potentially beneficial actions in females.
细胞色素 b 还原酶 3(CYB5R3)在细胞系统中激活呼吸代谢,并在过度表达这种酶的转基因小鼠中发挥延长寿命的作用,模拟了卡路里限制的一些有益效果。我们的研究目的是调查性对 CYB5R3 过表达引起的代谢适应的影响,以及与线粒体功能相关的关键标志物如何在骨骼肌中被调节,骨骼肌是静息能量消耗的主要贡献者之一。年轻的 CYB5R3 转基因小鼠没有表现出以前在老年动物中检测到的碳代谢的惊人适应。无论性别如何,CYB5R3 在转基因小鼠的骨骼肌中都被有效地过表达并靶向线粒体。过表达在两性中均显著提高了 NADH,但 NAD 没有统计学差异,并且增加了雌性中细胞色素 c 和分裂蛋白 DRP-1 的丰度,但在雄性中没有增加。此外,虽然 CYB5R3 过表达在雌性中显著上调了线粒体生物发生和功能标志物(如 TFAM、NRF-1 和切割的 SIRT3),但在雄性中观察到下调。超微结构变化也很明显,与野生型对照相比,转基因雌性的每个表面单位的线粒体数量增加,以及肌间线粒体的大小增加。我们的结果支持 CYB5R3 过表达上调与增强的线粒体生物发生和功能一致的标志物,并增加骨骼肌中线粒体的丰度,在雌性中产生大多数这些潜在的有益作用。