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肌细胞中的雄激素信号传导有助于维持肌肉质量和纤维类型调节,但对肌肉力量或疲劳没有影响。

Androgen signaling in myocytes contributes to the maintenance of muscle mass and fiber type regulation but not to muscle strength or fatigue.

作者信息

Ophoff Jill, Van Proeyen Karen, Callewaert Filip, De Gendt Karel, De Bock Katrien, Vanden Bosch An, Verhoeven Guido, Hespel Peter, Vanderschueren Dirk

机构信息

Department ofExperimental Medicine, Laboratory for Experimental Medicine and Endocrinology, Katholieke Universiteit Leuven, B-3000 Leuven, Belgium.

出版信息

Endocrinology. 2009 Aug;150(8):3558-66. doi: 10.1210/en.2008-1509. Epub 2009 Mar 5.

Abstract

Muscle frailty is considered a major cause of disability in the elderly and chronically ill. However, the exact role of androgen receptor (AR) signaling in muscle remains unclear. Therefore, a postmitotic myocyte-specific AR knockout (mARKO) mouse model was created and investigated together with a mouse model with ubiquitous AR deletion. Muscles from mARKO mice displayed a marked reduction in AR protein (60-88%). Interestingly, body weights and lean body mass were lower in mARKO vs. control mice (-8%). The weight of the highly androgen-sensitive musculus levator ani was significantly reduced (-46%), whereas the weights of other peripheral skeletal muscles were not or only slightly reduced. mARKO mice had lower intra-abdominal fat but did not demonstrate a cortical or trabecular bone phenotype, indicating that selective ablation of the AR in myocytes affected male body composition but not skeletal homeostasis. Furthermore, muscle contractile performance in mARKO mice did not differ from their controls. Myocyte-specific AR ablation resulted in a conversion of fast toward slow fibers, without affecting muscle strength or fatigue. Similar results were obtained in ubiquitous AR deletion, showing lower body weight, whereas some but not all muscle weights were reduced. The percent slow fibers was increased, but no changes in muscle strength or fatigue could be detected. Together, our findings show that myocyte AR signaling contributes to the maintenance of muscle mass and fiber type regulation but not to muscle strength or fatigue. The levator ani weight remains the most sensitive and specific marker of AR-mediated anabolic action on muscle.

摘要

肌肉衰弱被认为是老年人和慢性病患者残疾的主要原因。然而,雄激素受体(AR)信号在肌肉中的具体作用仍不清楚。因此,构建了一种有丝分裂后肌细胞特异性AR敲除(mARKO)小鼠模型,并与全身AR缺失的小鼠模型一起进行研究。mARKO小鼠的肌肉中AR蛋白显著减少(60 - 88%)。有趣的是,mARKO小鼠的体重和瘦体重低于对照小鼠(-8%)。对雄激素高度敏感的提肛肌重量显著降低(-46%),而其他外周骨骼肌的重量未降低或仅略有降低。mARKO小鼠的腹部脂肪较少,但未表现出皮质或小梁骨表型,这表明肌细胞中AR的选择性缺失影响雄性身体组成,但不影响骨骼稳态。此外,mARKO小鼠的肌肉收缩性能与对照小鼠没有差异。肌细胞特异性AR缺失导致快肌纤维向慢肌纤维转变,而不影响肌肉力量或疲劳。在全身AR缺失的小鼠中也获得了类似的结果,表现为体重降低,而部分但并非所有肌肉重量降低。慢肌纤维百分比增加,但未检测到肌肉力量或疲劳的变化。总之,我们的研究结果表明,肌细胞AR信号有助于维持肌肉质量和纤维类型调节,但对肌肉力量或疲劳没有影响。提肛肌重量仍然是AR介导的对肌肉合成代谢作用最敏感和特异的标志物。

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