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首页> 外文期刊>Journal of Molecular Endocrinology >Androgen-mediated improvement of body composition and muscle function involves a novel early transcriptional program including IGF1, mechano growth factor, and induction of β-catenin
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Androgen-mediated improvement of body composition and muscle function involves a novel early transcriptional program including IGF1, mechano growth factor, and induction of β-catenin

机译:雄激素介导的身体组成和肌肉功能的改善涉及一种新的早期转录程序,包括IGF1,机械生长因子和β-连环蛋白的诱导

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摘要

Androgens promote anabolism in the musculoskeletal system while generally repressing adiposity, leading to lean body composition. Circulating androgens decline with age, contributing to frailty, osteoporosis, and obesity; however, the mechanisms by which androgens modulate body composition are largely unknown. Here, we demonstrate that aged castrated rats develop increased fat mass, reduced muscle mass and strength, and lower bone mass. Treatment with testosterone or 5α-dihydrotestosterone (DHT) reverses the effects on muscle and adipose tissues while only aromatizable testosterone increased bone mass. During the first week, DHT transiently increased soleus muscle nuclear density and induced expression of IGF1 and its splice variant mechano growth factor (MGF) without early regulation of the myogenic factors MyoD, myogenin, monocyte nuclear factor, or myostatin. A genome-wide microarray screen was also performed to identify potential pro-myogenic genes that respond to androgen receptor activation in vivo within 24?h. Of 24?000 genes examined, 70 candidate genes were identified whose functions suggest initiation of remodeling and regeneration, including the type II muscle genes for myosin heavy chain type II and parvalbumin and the chemokine monocyte chemoattractant protein-1. Interestingly, Axin and Axin2, negative regulators of β-catenin, were repressed, indicating modulation of the β-catenin pathway. DHT increased total levels of β-catenin protein, which accumulated in nuclei in vivo. Likewise, treatment of C2C12 myoblasts with both IGF1Ea and MGF C-terminal peptide increased nuclear β-catenin in vitro. Thus, we propose that androgenic anabolism involves early downregulation of Axin and induction of IGF1, leading to nuclear accumulation of β-catenin, a pro-myogenic, anti-adipogenic stem cell regulatory factor.
机译:雄激素促进肌肉骨骼系统中的合成代谢,同时通常抑制肥胖,导致瘦身。循环中的雄激素会随着年龄的增长而下降,从而导致虚弱,骨质疏松和肥胖。然而,雄激素调节身体成分的机制尚不清楚。在这里,我们证明了aged割的老年大鼠会增加脂肪量,减少肌肉量和力量并降低骨量。睾丸激素或5α-二氢睾丸激素(DHT)的治疗可逆转对肌肉和脂肪组织的影响,而仅可芳香化的睾丸激素会增加骨量。在第一周,DHT短暂地增加了比目鱼肌核密度,并诱导了IGF1及其剪接变体机械生长因子(MGF)的表达,而没有早期调节成肌因子MyoD,肌生成素,单核细胞核因子或肌生长抑制素。还进行了全基因组微阵列筛选,以鉴定潜在的促肌原性基因,这些基因可在24小时内响应体内雄激素受体的激活。在检查的24 000 000个基因中,鉴定了70个候选基因,这些候选基因的功能暗示着重塑和再生的启动,包括肌球蛋白重链II型和小白蛋白的II型肌肉基因以及趋化因子单核细胞趋化蛋白1。有趣的是,β-catenin的负调控因子Axin和Axin2被抑制,表明对β-catenin途径的调节。 DHT增加了体内累积在细胞核中的β-catenin蛋白的总水平。同样,用IGF1Ea和MGF C末端肽治疗C2C12成肌细胞在体外可增加核β-连环蛋白的表达。因此,我们建议雄激素合成代谢涉及Axin的早期下调和IGF1的诱导,导致β-catenin(一种促肌原性,抗脂肪形成的干细胞调节因子)的核蓄积。

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