Sodium danshensu modulates skeletal muscle fiber type formation and metabolism by inhibiting pyruvate kinase M1.

IF 4.4 2区 医学 Q1 PHARMACOLOGY & PHARMACY Frontiers in Pharmacology Pub Date : 2024-10-22 eCollection Date: 2024-01-01 DOI:10.3389/fphar.2024.1467620
Yunxia Zhang, Xiaoxiao Wu, Ruoqi Li, Mengru Sui, Guoyin Li, Shuhua Fan, Mingsheng Yang, Qiuping Liu, Xiaomeng Liu, Changjing Wu, Lili Li
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Abstract

Sodium Danshensu (SDSS) is extracted from Salvia miltiorrhiza and has many pharmacological effects. However, little is known about its effects on muscle fiber formation and metabolism. Here, we aimed to investigated the role and molecular mechanisms of SDSS in modulating the formation of skeletal muscle fiber. C2C12 cells were incubated in differentiation medium with or without SDSS for 4 days. C57BL/6 mice were orally administered SDSS by gavage once a day for 8 weeks. Grip strength, treadmill, muscle weight, western blotting, qPCR, immunofluorescence staining and H&E staining were performed. SDSS target proteins were searched through drug affinity responsive target stability (DARTS) and mass spectrometry analysis. Furthermore, molecular docking was carried out for Pyruvate kinase M1 (PKM1). The effect of PKM1 on myosin heavy chain (MyHCs) gene expression was verified by knockdown of PKM1 experiment. SDSS induced oxidative muscle fiber-related gene expression, and inhibited glycolytic fiber-related gene expression in C2C12 cells. Muscle mass, the percentage of slow oxidative fibers, succinic dehydrogenase activity, muscle endurance, glucose tolerance, and the expression of the MyHC1 and MyHC2a genes increased while MyHC2b expression, lactate dehydrogenase activity, and the percentage of glycolytic muscle fibers decreased in SDSS-treated mice. Mechanistically, SDSS bound to the pyruvate kinase PKM1 and significantly repressed its activity. PKM1 inhibited MyHC1 and MyHC2a expression but promoted MyHC2b expression. SDSS also significantly attenuated the effects of PKM1 on muscle fiber-related gene expression in C2C12 cells. Our findings indicate that SDSS promotes muscle fiber transformation from the glycolytic type to the oxidative type by inhibiting PKM1 activity, which provide a new idea for treating muscle atrophy, muscle metabolism diseases and improving animal meat production.

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丹参素钠通过抑制丙酮酸激酶 M1 来调节骨骼肌纤维类型的形成和新陈代谢。
丹参素钠(SDSS)是从丹参中提取的,具有多种药理作用。然而,人们对其对肌肉纤维形成和新陈代谢的影响知之甚少。在此,我们旨在研究 SDSS 在调节骨骼肌纤维形成中的作用和分子机制。将 C2C12 细胞置于含有或不含 SDSS 的分化培养基中培养 4 天。给C57BL/6小鼠灌胃SDSS,每天一次,连续8周。进行握力、跑步、肌肉重量、Western印迹、qPCR、免疫荧光染色和H&E染色。通过药物亲和力反应靶标稳定性(DARTS)和质谱分析寻找 SDSS 靶蛋白。此外,还对丙酮酸激酶 M1(PKM1)进行了分子对接。通过敲除 PKM1 实验验证了 PKM1 对肌球蛋白重链(MyHCs)基因表达的影响。SDSS诱导了C2C12细胞中氧化肌纤维相关基因的表达,并抑制了糖酵解肌纤维相关基因的表达。经SDSS处理的小鼠肌肉质量、慢速氧化肌纤维百分比、琥珀酸脱氢酶活性、肌肉耐力、葡萄糖耐量以及MyHC1和MyHC2a基因的表达均有所增加,而MyHC2b的表达、乳酸脱氢酶活性和糖酵解肌纤维百分比则有所下降。从机理上讲,SDSS 与丙酮酸激酶 PKM1 结合,显著抑制了其活性。PKM1 抑制了 MyHC1 和 MyHC2a 的表达,但促进了 MyHC2b 的表达。SDSS 还能明显减弱 PKM1 对 C2C12 细胞中肌肉纤维相关基因表达的影响。我们的研究结果表明,SDSS能通过抑制PKM1的活性促进肌肉纤维从糖酵解型向氧化型转化,这为治疗肌肉萎缩、肌肉代谢疾病和提高动物肉产量提供了新思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Pharmacology
Frontiers in Pharmacology PHARMACOLOGY & PHARMACY-
CiteScore
7.80
自引率
8.90%
发文量
5163
审稿时长
14 weeks
期刊介绍: Frontiers in Pharmacology is a leading journal in its field, publishing rigorously peer-reviewed research across disciplines, including basic and clinical pharmacology, medicinal chemistry, pharmacy and toxicology. Field Chief Editor Heike Wulff at UC Davis is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
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