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甜菜碱通过阴阳1减轻Mss51诱导的线粒体呼吸损伤,从而延缓与年龄相关的肌肉流失。

Betaine delays age-related muscle loss by mitigating Mss51-induced impairment in mitochondrial respiration via Yin Yang1.

作者信息

Chen Si, He Tongtong, Chen Jiedong, Wen Dongsheng, Wang Chen, Huang Wenge, Yang Zhijun, Yang Mengtao, Li Mengchu, Huang Siyu, Huang Zihui, Zhu Huilian

机构信息

Department of Nutrition, School of Public Health, Sun Yat-sen University, Guangzhou, China.

School of Public Health, Guangdong Provincial Key Laboratory of Food, Nutrition and Health, Sun Yat-sen University, Guangzhou, China.

出版信息

J Cachexia Sarcopenia Muscle. 2024 Oct;15(5):2104-2117. doi: 10.1002/jcsm.13558. Epub 2024 Aug 26.

Abstract

BACKGROUND

Mitochondrial dysfunction is one of the hallmarks of aging and a leading contributor to sarcopenia. Nutrients are essential for improving mitochondrial function and skeletal muscle health during the aging process. Betaine is a nutrient with potential muscle-preserving properties. However, whether and how betaine could regulate the mitochondria function in aging muscle are poorly understood. We aimed to explore the molecular target and underlying mechanism of betaine in attenuating the age-related mitochondrial dysfunction in skeletal muscle.

METHODS

Young mice (YOU, 2 months), old mice (OLD, 15 months), and old mice with betaine treatment (BET, 15 months) were fed for 12 weeks. The effects of betaine on muscle mass, strength, function, and subcellular structure of muscle fibres were assessed. RNA sequencing (RNA-seq) was conducted to identify the molecular target of betaine. The impacts of betaine on mitochondrial-related molecules, superoxide accumulation, and oxidative respiration were examined using western blotting (WB), immunofluorescence (IF) and seahorse assay. The underlying mechanism of betaine regulation on the molecular target to maintain mitochondrial function was investigated by luciferase reporter assay, chromatin immunoprecipitation and electrophoretic mobility shift assay. Adenoassociated virus transfection, succinate dehydrogenase staining (SDH), and energy expenditure assessment were performed on 20-month-old mice for validating the mechanism in vivo.

RESULTS

Betaine intervention demonstrated anti-aging effects on the muscle mass (P = 0.017), strength (P = 0.010), and running distance (P = 0.013). Mitochondrial-related markers (ATP5a, Sdha, and Uqcrc2) were 1.1- to 1.5-fold higher in BET than OLD (all P ≤ 0.036) with less wasted mitochondrial vacuoles accumulating in sarcomere. Bioinformatic analysis from RNA-seq displayed pathways related to mitochondrial respiration activity was higher enriched in BET group (NES = -0.87, FDR = 0.10). The quantitative real time PCR (qRT-PCR) revealed betaine significantly reduced the expression of a novel mitochondrial regulator, Mss51 (-24.9%, P = 0.002). In C2C12 cells, betaine restored the Mss51-mediated suppression in mitochondrial respiration proteins (all P ≤ 0.041), attenuated oxygen consumption impairment, and superoxide accumulation (by 20.7%, P = 0.001). Mechanically, betaine attenuated aging-induced repression in Yy1 mRNA expression (BET vs. OLD: 2.06 vs. 1.02, P = 0.009). Yy1 transcriptionally suppressed Mss51 mRNA expression both in vitro and in vivo. This contributed to the preservation of mitochondrial respiration, improvement for energy expenditure (P = 0.008), and delay of muscle loss during aging process.

CONCLUSIONS

Altogether, betaine transcriptionally represses Mss51 via Yy1, improving age-related mitochondrial respiration in skeletal muscle. These findings suggest betaine holds promise as a dietary supplement to delay skeletal muscle degeneration and improve age-related mitochondrial diseases.

摘要

背景

线粒体功能障碍是衰老的标志之一,也是导致肌肉减少症的主要因素。营养物质对于在衰老过程中改善线粒体功能和骨骼肌健康至关重要。甜菜碱是一种具有潜在肌肉保护特性的营养物质。然而,甜菜碱是否以及如何调节衰老肌肉中的线粒体功能尚不清楚。我们旨在探索甜菜碱减轻骨骼肌中与年龄相关的线粒体功能障碍的分子靶点和潜在机制。

方法

对年轻小鼠(2个月龄,YOU)、老年小鼠(15个月龄,OLD)和接受甜菜碱治疗的老年小鼠(15个月龄,BET)进行12周的喂养。评估甜菜碱对肌肉质量、力量、功能和肌纤维亚细胞结构的影响。进行RNA测序(RNA-seq)以确定甜菜碱的分子靶点。使用蛋白质免疫印迹法(WB)、免疫荧光法(IF)和海马体分析检测甜菜碱对线粒体相关分子、超氧化物积累和氧化呼吸的影响。通过荧光素酶报告基因检测、染色质免疫沉淀和电泳迁移率变动分析研究甜菜碱对维持线粒体功能的分子靶点的调节机制。对20个月龄的小鼠进行腺相关病毒转染、琥珀酸脱氢酶染色(SDH)和能量消耗评估,以在体内验证该机制。

结果

甜菜碱干预对肌肉质量(P = 0.017)、力量(P = 0.010)和跑步距离(P = 0.013)具有抗衰老作用。与OLD组相比,BET组中线粒体相关标志物(ATP5a、Sdha和Uqcrc2)高1.1至1.5倍(所有P≤0.036),肌节中积累的废弃线粒体空泡较少。RNA-seq的生物信息学分析显示,BET组中与线粒体呼吸活性相关的通路富集程度更高(标准化富集分数NES = -0.87,错误发现率FDR = 0.10)。定量实时PCR(qRT-PCR)显示,甜菜碱显著降低了一种新型线粒体调节剂Mss51的表达(-24.9%,P = 0.002)。在C2C12细胞中,甜菜碱恢复了Mss51介导的线粒体呼吸蛋白抑制作用(所有P≤0.041),减轻了耗氧损伤和超氧化物积累(降低20.7%,P = 0.001)。从机制上讲,甜菜碱减轻了衰老诱导的Yy1 mRNA表达抑制(BET组与OLD组:2.06对1.02,P = 0.009)。Yy1在体外和体内均转录抑制Mss51 mRNA表达。这有助于维持线粒体呼吸、改善能量消耗(P = 0.008)并延缓衰老过程中的肌肉损失。

结论

总之,甜菜碱通过Yy1转录抑制Mss51,改善与年龄相关的骨骼肌线粒体呼吸。这些发现表明,甜菜碱有望作为一种膳食补充剂来延缓骨骼肌退化并改善与年龄相关的线粒体疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d082/11446699/4278e811fc5f/JCSM-15-2104-g004.jpg

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