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线粒体解偶联通过增强骨骼肌自噬和质量控制来减轻肥胖型骨骼肌减少症。

Mitochondrial uncoupling attenuates sarcopenic obesity by enhancing skeletal muscle mitophagy and quality control.

机构信息

Integrated Physiology and Molecular Medicine Laboratory, Pennington Biomedical Research Center, Baton Rouge, LA, USA.

Ubiquitin Biology Laboratory, Pennington Biomedical Research Center, Baton Rouge, LA, USA.

出版信息

J Cachexia Sarcopenia Muscle. 2022 Jun;13(3):1821-1836. doi: 10.1002/jcsm.12982. Epub 2022 Mar 19.

Abstract

BACKGROUND

Sarcopenic obesity is a highly prevalent disease with poor survival and ineffective medical interventions. Mitochondrial dysfunction is purported to be central in the pathogenesis of sarcopenic obesity by impairing both organelle biogenesis and quality control. We have previously identified that a mitochondrial-targeted furazano[3,4-b]pyrazine named BAM15 is orally available and selectively lowers respiratory coupling efficiency and protects against diet-induced obesity in mice. Here, we tested the hypothesis that mitochondrial uncoupling simultaneously attenuates loss of muscle function and weight gain in a mouse model of sarcopenic obesity.

METHODS

Eighty-week-old male C57BL/6J mice with obesity were randomized to 10 weeks of high fat diet (CTRL) or BAM15 (BAM15; 0.1% w/w in high fat diet) treatment. Body weight and food intake were measured weekly. Body composition, muscle function, energy expenditure, locomotor activity, and glucose tolerance were determined after treatment. Skeletal muscle was harvested and evaluated for histology, gene expression, protein signalling, and mitochondrial structure and function.

RESULTS

BAM15 decreased body weight (54.0 ± 2.0 vs. 42.3 ± 1.3 g, P < 0.001) which was attributable to increased energy expenditure (10.1 ± 0.1 vs. 11.3 ± 0.4 kcal/day, P < 0.001). BAM15 increased muscle mass (52.7 ± 0.4 vs. 59.4 ± 1.0%, P < 0.001), strength (91.1 ± 1.3 vs. 124.9 ± 1.2 g, P < 0.0001), and locomotor activity (347.0 ± 14.4 vs. 432.7 ± 32.0 m, P < 0.001). Improvements in physical function were mediated in part by reductions in skeletal muscle inflammation (interleukin 6 and gp130, both P < 0.05), enhanced mitochondrial function, and improved endoplasmic reticulum homeostasis. Specifically, BAM15 activated mitochondrial quality control (PINK1-ubiquitin binding and LC3II, P < 0.01), increased mitochondrial activity (citrate synthase and complex II activity, all P < 0.05), restricted endoplasmic reticulum (ER) misfolding (decreased oligomer A11 insoluble/soluble ratio, P < 0.0001) while limiting ER stress (decreased PERK signalling, P < 0.0001), apoptotic signalling (decreased cytochrome C release and Caspase-3/9 activation, all P < 0.001), and muscle protein degradation (decreased 14-kDa actin fragment insoluble/soluble ratio, P < 0.001).

CONCLUSIONS

Mitochondrial uncoupling by agents such as BAM15 may mitigate age-related decline in muscle mass and function by molecular and cellular bioenergetic adaptations that confer protection against sarcopenic obesity.

摘要

背景

肌少症性肥胖是一种高发病率疾病,患者生存状况较差,且医学干预效果不佳。据认为,线粒体功能障碍通过损害细胞器的生物发生和质量控制,在肌少症性肥胖的发病机制中起核心作用。我们之前已经发现,一种名为 BAM15 的靶向线粒体的呋喃并[3,4-b]吡嗪具有口服活性,可选择性降低呼吸偶联效率,并可预防小鼠饮食诱导的肥胖。在这里,我们测试了这样一个假设,即线粒体解偶联同时减轻了肌少症肥胖小鼠模型中肌肉功能丧失和体重增加。

方法

80 周龄雄性 C57BL/6J 肥胖小鼠随机分为 10 周高脂肪饮食(CTRL)或 BAM15(BAM15;高脂肪饮食中 0.1%w/w)治疗组。每周测量体重和食物摄入量。治疗后测定体成分、肌肉功能、能量消耗、运动活动和葡萄糖耐量。采集骨骼肌并评估组织学、基因表达、蛋白质信号转导以及线粒体结构和功能。

结果

BAM15 降低了体重(54.0±2.0 与 42.3±1.3 g,P<0.001),这归因于能量消耗增加(10.1±0.1 与 11.3±0.4 kcal/天,P<0.001)。BAM15 增加了肌肉质量(52.7±0.4 与 59.4±1.0%,P<0.001)、力量(91.1±1.3 与 124.9±1.2 g,P<0.0001)和运动活动(347.0±14.4 与 432.7±32.0 m,P<0.001)。身体功能的改善部分是通过减少骨骼肌炎症(白细胞介素 6 和 gp130,均 P<0.05)、增强线粒体功能和改善内质网稳态来介导的。具体而言,BAM15 激活了线粒体质量控制(PINK1-泛素结合和 LC3II,均 P<0.01),增加了线粒体活性(柠檬酸合酶和复合物 II 活性,均 P<0.05),限制了内质网(ER)错误折叠(降低寡聚 A11 不溶性/可溶性比,P<0.0001),同时限制了 ER 应激(减少 PERK 信号,P<0.0001)、凋亡信号(减少细胞色素 C 释放和 Caspase-3/9 激活,均 P<0.001)和肌肉蛋白降解(减少 14-kDa 肌动蛋白片段不溶性/可溶性比,P<0.001)。

结论

BAM15 等线粒体解偶联剂可能通过分子和细胞生物能适应来减轻与年龄相关的肌肉质量和功能下降,从而预防肌少症性肥胖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a37f/9178352/151db171f71c/JCSM-13-1821-g002.jpg

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