Farnesol prevents aging-related muscle weakness in mice through enhanced farnesylation of Parkin-interacting substrate

预酸化 法尼醇 帕金 生物 药理学 基质(水族馆) 肌肉无力 内科学 神经科学 细胞生物学 化学 生物化学 医学 帕金森病 酶 疾病 生态学
作者
Ju‐Hyeon Bae,Areum Jo,Sung Chun Cho,Yun‐Il Lee,Tae‐In Kam,C. H. You,Hyeon‐Ju Jeong,Hyebeen Kim,Myong‐Ho Jeong,Yideul Jeong,Young Wan Ha,Yu Seon Kim,Ji‐Woon Kim,Seung‐Hwa Woo,Minseok S. Kim,Eui Seok Shin,Sang Ok Song,Hojin Kang,Rin Khang,Soo-Jeong Park
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:15 (711): eabh3489-eabh3489 被引量:19
标识
DOI:10.1126/scitranslmed.abh3489
摘要

Peroxisome proliferator–activated receptor-γ coactivator-1α (PGC-1α) is a master regulator of mitochondrial biogenesis. Reduced PGC-1α abundance is linked to skeletal muscle weakness in aging or pathological conditions, such as neurodegenerative diseases and diabetes; thus, elevating PGC-1α abundance might be a promising strategy to treat muscle aging. Here, we performed high-throughput screening and identified a natural compound, farnesol, as a potent inducer of PGC-1α. Farnesol administration enhanced oxidative muscle capacity and muscle strength, leading to metabolic rejuvenation in aged mice. Moreover, farnesol treatment accelerated the recovery of muscle injury associated with enhanced muscle stem cell function. The protein expression of Parkin-interacting substrate (PARIS/ Zfp746 ), a transcriptional repressor of PGC-1α, was elevated in aged muscles, likely contributing to PGC-1α reduction. The beneficial effect of farnesol on aged muscle was mediated through enhanced PARIS farnesylation, thereby relieving PARIS-mediated PGC-1α suppression. Furthermore, short-term exercise increased PARIS farnesylation in the muscles of young and aged mice, whereas long-term exercise decreased PARIS expression in the muscles of aged mice, leading to the elevation of PGC-1α. Collectively, the current study demonstrated that the PARIS–PGC-1α pathway is linked to muscle aging and that farnesol treatment can restore muscle functionality in aged mice through increased farnesylation of PARIS.
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