Department of Movement, Human and Health Sciences Section of Health Sciences, Unit of Endocrinology, Università degli Studi di Roma "Foro Italico", 00135, Rome, Italy.
Department of Anatomical, Histological, Forensic and Orthopedic Sciences-Section of Histology and Medical Embryology, Sapienza University of Rome, Rome, Italy.
J Endocrinol Invest. 2017 Oct;40(10):1133-1143. doi: 10.1007/s40618-017-0686-y. Epub 2017 May 15.
Testosterone by promoting different metabolic pathways contributes to short-term homeostasis of skeletal muscle, the largest insulin-sensitive tissue and the primary site for insulin-stimulated glucose utilization. Despite evidences indicate a close relationship between testosterone and glucose metabolism, the molecular mechanisms responsible for a possible testosterone-mediated insulin-like effects on skeletal muscle are still unknown.
Here we used undifferentiated proliferating or differentiated human fetal skeletal muscle cells (Hfsmc) to investigate the short-term effects of testosterone on the insulin-mediated biomolecular metabolic machinery. GLUT4 cell expression, localization and the phosphorylation/activation of AKT, ERK, mTOR and GSK3β insulin-related pathways at different time points after treatment with testosterone were analyzed.
Independently from cells differentiation status, testosterone, with an insulin-like effect, induced Glut4-mRNA expression, GLUT4 protein translocation to the cytoplasmic membrane, while no effect was observed on GLUT4 protein expression levels. Furthermore, testosterone treatment modulated the insulin-dependent signal transduction pathways inducing a rapid and persistent activation of AKT, ERK and mTOR, and a transient inhibition of GSK3β. T-related effects were shown to be androgen receptor dependent.
All together our data indicate that testosterone through the activation of non-genomic pathways, participates in skeletal muscle glucose metabolism by inducing insulin-related effects.
睾酮通过促进不同的代谢途径,有助于骨骼肌肉的短期内稳态,骨骼肌肉是最大的胰岛素敏感组织,也是胰岛素刺激葡萄糖利用的主要部位。尽管有证据表明睾酮和葡萄糖代谢之间存在密切关系,但负责睾酮对骨骼肌肉可能产生类似胰岛素作用的分子机制仍不清楚。
我们使用未分化的增殖或分化的人胎儿骨骼肌肉细胞(Hfsmc)来研究睾酮对胰岛素介导的生物分子代谢机制的短期影响。在不同时间点用睾酮处理后,分析 GLUT4 细胞表达、定位以及 AKT、ERK、mTOR 和 GSK3β 胰岛素相关途径的磷酸化/激活情况。
与细胞分化状态无关,睾酮具有类似胰岛素的作用,诱导 Glut4-mRNA 表达,GLUT4 蛋白向细胞质膜转位,而对 GLUT4 蛋白表达水平没有影响。此外,睾酮处理调节胰岛素依赖的信号转导途径,诱导 AKT、ERK 和 mTOR 的快速和持续激活,以及 GSK3β 的短暂抑制。与 T 相关的作用被证明依赖于雄激素受体。
总之,我们的数据表明,睾酮通过激活非基因组途径,通过诱导胰岛素相关作用参与骨骼肌肉的葡萄糖代谢。