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Regulation of Myogenic Differentiation by Androgens: Cross Talk between Androgen Receptor/ β-Catenin and Follistatin/Transforming Growth Factor-β Signaling Pathways

机译:雄激素调节肌源性分化:雄激素受体/β-连环蛋白与卵泡抑素/转化生长因子-β信号通路之间的串扰

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摘要

Androgens are important regulators of body composition and promote myogenic differentiation and inhibit adipogenesis of mesenchymal, multipotent cells. Here, we investigated the mechanisms by which androgens induce myogenic differentiation of mesenchymal multipotent cells. Incubation of mesenchymal multipotent C3H 10T1/2 cells with testosterone and dihydrotestosterone promoted nuclear translocation of androgen receptor (AR)/β-catenin complex and physical interaction of AR, β-catenin, and T-cell factor-4 (TCF-4). Inhibition of β-catenin by small inhibitory RNAs significantly decreased testosterone-induced stimulation of myogenic differentiation. Overexpression of TCF-4, a molecule downstream of β-catenin in Wnt signaling cascade, in C3H 10T1/2 cells significantly up-regulated expression of myoD and myosin heavy chain II proteins and of follistatin (Fst), which binds and antagonizes native ligands of the TGF-β/Smad pathway. Gene array analysis of C3H 10T1/2 cells treated with testosterone revealed that testosterone up-regulated the expression of Fst and modified the expression of several signaling molecules involved in the TGF-β/Smad pathway, including Smad7. Lowering of testosterone levels in mice by orchidectomy led to a significant decrease in Fst and Smad7 expression; conversely, testosterone supplementation in castrated mice up-regulated Fst and Smad7 mRNA expression in androgen-responsive levator ani muscle. Testosterone-induced up-regulation of MyoD and myosin heavy chain II proteins in C3H 10T1/2 cells was abolished in cells simultaneously treated with anti-Fst antibody, suggesting an essential role of Fst during testosterone regulation of myogenic differentiation. In conclusion, our data suggest the involvement of AR, β-catenin, and TCF-4 pathway during androgen action to activate a number of Wnt target genes, including Fst, and cross communication with the Smad signaling pathway.
机译:雄激素是人体成分的重要调节剂,可促进肌原性分化并抑制间充质多能细胞的脂肪形成。在这里,我们研究了雄激素诱导间充质多能细胞分化的机制。将间充质性C3H 10T1 / 2细胞与睾丸激素和二氢睾丸激素一起孵育可促进雄激素受体(AR)/β-catenin复合物的核易位以及AR,β-catenin和T细胞因子4(TCF-4)的物理相互作用。小抑制性RNA抑制β-连环蛋白可显着降低睾丸激素诱导的肌原性分化刺激。在Wnt信号级联反应中,β-catenin下游分子TCF-4的过度表达在C3H 10T1 / 2细胞中显着上调了myoD和myosin重链II蛋白以及卵泡抑素(Fst)的表达,后者结合并拮抗天然配体。 TGF-β/ Smad途径的作用。用睾丸激素处理的C3H 10T1 / 2细胞的基因阵列分析显示,睾丸激素上调了Fst的表达并修饰了参与TGF-β/ Smad途径的几种信号分子的表达,包括Smad7。兰花切除术降低了小鼠的睾丸激素水平,导致Fst和Smad7表达显着下降。相反,去势小鼠体内补充睾丸激素会上调雄激素反应性提肛动物的Fst和Smad7 mRNA表达。在同时用抗Fst抗体处理的细胞中,取消了C3H 10T1 / 2细胞中睾丸激素诱导的MyoD和肌球蛋白重链II蛋白的上调,这表明Fst在睾丸激素调节肌原性分化过程中的重要作用。总之,我们的数据表明,在雄激素作用期间,AR,β-连环蛋白和TCF-4途径参与了激活Wnt靶基因(包括Fst)的激活过程,并与Smad信号通路发生交叉通讯。

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