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增加线粒体肌肉脂肪酸氧化可诱导骨骼肌重塑为氧化型表型。

Increasing mitochondrial muscle fatty acid oxidation induces skeletal muscle remodeling toward an oxidative phenotype.

作者信息

Hénique Carole, Mansouri Abdelhak, Vavrova Eliska, Lenoir Véronique, Ferry Arnaud, Esnous Catherine, Ramond Elodie, Girard Jean, Bouillaud Frédéric, Prip-Buus Carina, Cohen Isabelle

机构信息

*Institut National de la Santé et de la Recherche Médicale (INSERM), U1016, Institut Cochin, Paris, France; Centre National de la Recherche Scientifique (CNRS), Unité Mixte de Recherche (UMR) 8104, Paris, France; Université Paris Descartes, Sorbonne Paris Cité, Paris, France; and INSERM U974, CNRS UMR 7215, Université Pierre et Marie Curie UMRS 974, Institut de Myologie, Paris, France.

*Institut National de la Santé et de la Recherche Médicale (INSERM), U1016, Institut Cochin, Paris, France; Centre National de la Recherche Scientifique (CNRS), Unité Mixte de Recherche (UMR) 8104, Paris, France; Université Paris Descartes, Sorbonne Paris Cité, Paris, France; and INSERM U974, CNRS UMR 7215, Université Pierre et Marie Curie UMRS 974, Institut de Myologie, Paris, France

出版信息

FASEB J. 2015 Jun;29(6):2473-83. doi: 10.1096/fj.14-257717. Epub 2015 Feb 23.

Abstract

Adult skeletal muscle is a dynamic, remarkably plastic tissue, which allows myofibers to switch from fast/glycolytic to slow/oxidative types and to increase mitochondrial fatty acid oxidation (mFAO) capacity and vascularization in response to exercise training. mFAO is the main muscle energy source during endurance exercise, with carnitine palmitoyltransferase 1 (CPT1) being the key regulatory enzyme. Whether increasing muscle mFAO affects skeletal muscle physiology in adulthood actually remains unknown. To investigate this, we used in vivo electrotransfer technology to express in mouse tibialis anterior (TA), a fast/glycolytic muscle, a mutated CPT1 form (CPT1mt) that is active but insensitive to malonyl-CoA, its physiologic inhibitor. In young (2-mo-old) adult mice, muscle CPT1mt expression enhanced mFAO (+40%), but also increased the percentage of oxidative fibers (+28%), glycogen content, and capillary-to-fiber density (+45%). This CPT1mt-induced muscle remodeling, which mimicked exercise-induced oxidative phenotype, led to a greater resistance to muscle fatigue. In the context of aging, characterized by sarcopenia and reduced oxidative capacity, CPT1mt expression in TAs from aged (20-mo-old) mice partially reversed aging-associated sarcopenia and fiber-type transition, and increased muscle capillarity. These findings provide evidence that mFAO regulates muscle phenotype and may be a potential target to combat age-related decline in muscle function.

摘要

成年骨骼肌是一种动态的、具有显著可塑性的组织,它能使肌纤维从快肌/糖酵解型转变为慢肌/氧化型,并能在运动训练时增加线粒体脂肪酸氧化(mFAO)能力和血管生成。mFAO是耐力运动期间肌肉的主要能量来源,肉碱棕榈酰转移酶1(CPT1)是关键调节酶。增加肌肉mFAO是否会影响成年期骨骼肌生理实际上仍不清楚。为了对此进行研究,我们利用体内电转技术在小鼠胫前肌(TA)(一种快肌/糖酵解型肌肉)中表达一种活性但对其生理抑制剂丙二酰辅酶A不敏感的突变型CPT1(CPT1mt)。在年轻(2月龄)成年小鼠中,肌肉CPT1mt表达增强了mFAO(增加40%),但也增加了氧化纤维百分比(增加28%)、糖原含量以及毛细血管与纤维的密度(增加45%)。这种由CPT1mt诱导的肌肉重塑模拟了运动诱导的氧化表型,导致对肌肉疲劳的抵抗力增强。在以肌肉减少症和氧化能力降低为特征的衰老背景下,在老年(20月龄)小鼠TA中表达CPT1mt可部分逆转与衰老相关的肌肉减少症和纤维类型转变,并增加肌肉毛细血管密度。这些发现提供了证据,表明mFAO调节肌肉表型,可能是对抗与年龄相关的肌肉功能衰退的一个潜在靶点。

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