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骨骼肌中的 microRNA-92b 通过调节葡萄糖代谢来调节运动能力。

MicroRNA-92b in the skeletal muscle regulates exercise capacity via modulation of glucose metabolism.

机构信息

Department of Geriatrics, Shenzhen People's Hospital (The Second Clinical Medical College, Jinan University, Guangzhou, China.

The First Affiliated Hospital, Southern University of Science and Technology, Shenzhen, China.

出版信息

J Cachexia Sarcopenia Muscle. 2023 Dec;14(6):2925-2938. doi: 10.1002/jcsm.13377. Epub 2023 Nov 20.

Abstract

BACKGROUND

Exercise mimetics is a proposed class of therapeutics that specifically mimics or enhances the therapeutic effects of exercise. Muscle glycogen and lactate extrusion are critical for physical performance. The mechanism by which glycogen and lactate metabolism are manipulated during exercise remains unclear. This study aimed to assess the effect of miR-92b on the upregulation of exercise training-induced physical performance.

METHODS

Adeno-associated virus (AAV)-mediated skeletal muscle miR-92b overexpression in C57BLKS/J mice, and global knockout of miR-92b mice were used to explore the function of miR-92b in glycogen and lactate metabolism in skeletal muscle. AAV-mediated UGP2 or MCT4 knockdown in WT or miR-92 knockout mice was used to confirm whether miR-92b regulates glycogen and lactate metabolism in skeletal muscle through UGP2 and MCT4. Body weight, muscle weight, grip strength, running time and distance to exhaustion, and muscle histology were assessed. The expression levels of muscle mass-related and function-related proteins were analysed by immunoblotting or immunostaining.

RESULTS

Global knockout of miR-92b resulted in normal body weight and insulin sensitivity, but higher glycogen content before exercise exhaustion (0.8538 ± 0.0417 vs. 1.043 ± 0.040, **P = 0.0087), lower lactate levels after exercise exhaustion (4.133 ± 0.2589 vs. 3.207 ± 0.2511, *P = 0.0279), and better exercise capacity (running distance to exhaustion, 3616 ± 86.71 vs. 4231 ± 90.29, ***P = 0.0006; running time to exhaustion, 186.8 ± 8.027 vs. 220.8 ± 3.156, **P = 0.0028), as compared with those observed in the control mice. Mice skeletal muscle overexpressing miR-92b (both miR-92b-3p and miR-92b-5p) displayed lower glycogen content before exercise exhaustion (0.6318 ± 0.0231 vs. 0.535 ± 0.0194, **P = 0.0094), and higher lactate accumulation after exercise exhaustion (4.5 ± 0.2394 vs. 5.467 ± 0.1892, *P = 0.01), and poorer exercise capacity (running distance to exhaustion, 4005 ± 81.65 vs. 3228 ± 149.8, ***P<0.0001; running time to exhaustion, 225.5 ± 7.689 vs. 163 ± 6.476, **P = 0.001). Mechanistic analysis revealed that miR-92b-3p targets UDP-glucose pyrophosphorylase 2 (UGP2) expression to inhibit glycogen synthesis, while miR-92b-5p represses lactate extrusion by directly target monocarboxylate transporter 4 (MCT4). Knockdown of UGP2 and MCT4 reversed the effects observed in the absence of miR-92b in vivo.

CONCLUSIONS

This study revealed regulatory pathways, including miR-92b-3p/UGP2/glycogen synthesis and miR-92b-5p/MCT4/lactate extrusion, which could be targeted to control exercise capacity.

摘要

背景

运动模拟物是一类拟议的治疗药物,专门模拟或增强运动的治疗效果。肌肉糖原和乳酸的外排对于身体表现至关重要。在运动过程中,糖原和乳酸代谢的调控机制仍不清楚。本研究旨在评估 miR-92b 对增强运动训练诱导的身体表现的影响。

方法

使用腺相关病毒(AAV)介导的 C57BLKS/J 小鼠骨骼肌 miR-92b 过表达和 miR-92b 全局敲除小鼠来探索 miR-92b 在骨骼肌中糖原和乳酸代谢中的功能。使用 AAV 介导的 WT 或 miR-92 敲除小鼠的 UGP2 或 MCT4 敲低来证实 miR-92b 是否通过 UGP2 和 MCT4 调节骨骼肌中的糖原和乳酸代谢。评估体重、肌肉重量、握力、跑步时间和疲劳距离以及肌肉组织学。通过免疫印迹或免疫染色分析肌肉质量相关和功能相关蛋白的表达水平。

结果

miR-92b 的全局敲除导致体重和胰岛素敏感性正常,但在运动衰竭前糖原含量更高(0.8538±0.0417 比 1.043±0.040,**P=0.0087),运动衰竭后乳酸水平更低(4.133±0.2589 比 3.207±0.2511,*P=0.0279),运动能力更好(跑步疲劳距离,3616±86.71 比 4231±90.29,***P=0.0006;跑步疲劳时间,186.8±8.027 比 220.8±3.156,**P=0.0028),与对照组相比。过表达 miR-92b 的小鼠(miR-92b-3p 和 miR-92b-5p 均过表达)在运动衰竭前糖原含量更低(0.6318±0.0231 比 0.535±0.0194,**P=0.0094),运动衰竭后乳酸积累更多(4.5±0.2394 比 5.467±0.1892,*P=0.01),运动能力更差(跑步疲劳距离,4005±81.65 比 3228±149.8,***P<0.0001;跑步疲劳时间,225.5±7.689 比 163±6.476,**P=0.001)。机制分析表明,miR-92b-3p 靶向 UDP-葡萄糖焦磷酸化酶 2(UGP2)表达以抑制糖原合成,而 miR-92b-5p 通过直接靶向单羧酸转运蛋白 4(MCT4)抑制乳酸外排。UGP2 和 MCT4 的敲低逆转了体内缺乏 miR-92b 时观察到的效果。

结论

本研究揭示了调节途径,包括 miR-92b-3p/UGP2/糖原合成和 miR-92b-5p/MCT4/乳酸外排,这些途径可以作为控制运动能力的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a27d/10751421/a1f3302a6e9d/JCSM-14-2925-g006.jpg

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