Distinct and additive effects of calorie restriction and rapamycin in aging skeletal muscle

热卡限制 mTORC1型 骨骼肌 生物 老化 肌萎缩 内分泌学 细胞生物学 蛋白激酶B 内科学 医学 磷酸化 遗传学
作者
Daniel J. Ham,Anastasiya Börsch,Kathrin Chojnowska,Shuo Lin,Aurel B. Leuchtmann,Alexander S. Ham,Marco Thürkauf,Julien Delezie,Regula Furrer,Dominik Bürri,Michael Sinnreich,Christoph Handschin,Lionel Tintignac,Mihaela Zavolan,Nitish Mittal,Markus A. Rüegg
标识
DOI:10.1101/2021.05.28.446097
摘要

Abstract As global life expectancy continues to climb, maintaining skeletal muscle function is increasingly essential to ensure a good life quality for aging populations. Calorie restriction (CR) is the most potent and reproducible intervention to extend health and lifespan, but is largely unachievable in humans. Therefore, identification of “CR mimetics” has received much attention. CR targets nutrient-sensing pathways centering on mTORC1. The mTORC1 inhibitor, rapamycin, has been proposed as a potential CR mimetic and is proven to counteract age-related muscle loss. Therefore, we tested whether rapamycin acts via similar mechanisms as CR to slow muscle aging. Contrary to our expectation, long-term CR and rapamycin-treated geriatric mice display distinct skeletal muscle gene expression profiles despite both conferring benefits to aging skeletal muscle. Furthermore, CR improved muscle integrity in a mouse with nutrient-insensitive sustained muscle mTORC1 activity and rapamycin provided additive benefits to CR in aging mouse muscles. Therefore, RM and CR exert distinct, compounding effects in aging skeletal muscle, opening the possibility of parallel interventions to counteract muscle aging.
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