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营养不良性骨骼肌的代谢重塑揭示了 dystrophin 和 utrophin 在适应和可塑性中的生物学作用。

Metabolic remodeling of dystrophic skeletal muscle reveals biological roles for dystrophin and utrophin in adaptation and plasticity.

机构信息

Centre for Muscle Research, Department of Anatomy and Physiology, The University of Melbourne, Melbourne, Victoria, 3010, Australia.

Department of Physiology, The University of Melbourne, Melbourne, Victoria, 3010, Australia.

出版信息

Mol Metab. 2021 Mar;45:101157. doi: 10.1016/j.molmet.2020.101157. Epub 2020 Dec 24.

Abstract

OBJECTIVES

Preferential damage to fast, glycolytic myofibers is common in many muscle-wasting diseases, including Duchenne muscular dystrophy (DMD). Promoting an oxidative phenotype could protect muscles from damage and ameliorate the dystrophic pathology with therapeutic relevance, but developing efficacious strategies requires understanding currently unknown biological roles for dystrophin and utrophin in dystrophic muscle adaptation and plasticity.

METHODS

Combining whole transcriptome RNA sequencing and mitochondrial proteomics with assessments of metabolic and contractile function, we investigated the roles of dystrophin and utrophin in fast-to-slow muscle remodeling with low-frequency electrical stimulation (LFS, 10 Hz, 12 h/d, 7 d/wk, 28 d) in mdx (dystrophin null) and dko (dystrophin/utrophin null) mice, two established preclinical models of DMD.

RESULTS

Novel biological roles in adaptation were demonstrated by impaired transcriptional activation of estrogen-related receptor alpha-responsive genes supporting oxidative phosphorylation in dystrophic muscles. Further, utrophin expression in dystrophic muscles was required for LFS-induced remodeling of mitochondrial respiratory chain complexes, enhanced fiber respiration, and conferred protection from eccentric contraction-mediated damage.

CONCLUSIONS

These findings reveal novel roles for dystrophin and utrophin during LFS-induced metabolic remodeling of dystrophic muscle and highlight the therapeutic potential of LFS to ameliorate the dystrophic pathology and protect from contraction-induced injury with important implications for DMD and related muscle disorders.

摘要

目的

在许多肌肉消耗性疾病中,快速、糖酵解的肌纤维优先受损是很常见的,包括杜氏肌营养不良症(DMD)。促进氧化表型可能有助于保护肌肉免受损伤,并改善具有治疗相关性的营养不良病理,但开发有效的策略需要了解肌营养不良蛋白和 utrophin 在营养不良肌肉适应和可塑性中的未知生物学作用。

方法

我们结合全转录组 RNA 测序和线粒体蛋白质组学以及代谢和收缩功能评估,研究了在 mdx(肌营养不良蛋白缺失)和 dko(肌营养不良蛋白/utrophin 缺失)小鼠中,低频电刺激(LFS,10 Hz,12 h/d,7 d/wk,28 d)对快肌向慢肌重塑的作用,这两种模型都是 DMD 的临床前模型。

结果

在营养不良的肌肉中,雌激素相关受体α反应基因的转录激活受损,这表明在适应过程中肌营养不良蛋白和 utrophin 具有新的生物学作用,支持氧化磷酸化。此外,utrophin 在营养不良肌肉中的表达对于 LFS 诱导的线粒体呼吸链复合物重塑、增强纤维呼吸以及提供对抗离心收缩介导的损伤的保护作用是必需的。

结论

这些发现揭示了肌营养不良蛋白和 utrophin 在 LFS 诱导的营养不良肌肉代谢重塑过程中的新作用,并强调了 LFS 治疗改善营养不良病理和防止收缩引起损伤的治疗潜力,这对 DMD 和相关肌肉疾病具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74aa/7811171/d594028b9b9b/fx1.jpg

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