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小鼠骨骼肌再生受到V1a-血管加压素受体局部过表达的刺激。

Skeletal muscle regeneration in mice is stimulated by local overexpression of V1a-vasopressin receptor.

作者信息

Toschi Angelica, Severi Annalisa, Coletti Dario, Catizone Angela, Musarò Antonio, Molinaro Mario, Nervi Clara, Adamo Sergio, Scicchitano Bianca Maria

机构信息

Department of Anatomical, Histological, Forensic, and Orthopaedic Sciences, Sapienza University of Rome, Rome, Italy.

出版信息

Mol Endocrinol. 2011 Sep;25(9):1661-73. doi: 10.1210/me.2011-1049. Epub 2011 Aug 4.

Abstract

Skeletal muscle has a remarkable capacity to regenerate after mechanical or pathological injury. We show that the V1a receptor (V1aR) for vasopressin, a potent myogenic-promoting factor that stimulates differentiation and hypertrophy in vitro, is expressed in mouse skeletal muscle and modulated during regeneration after experimental injury. We used gene delivery by electroporation to overexpress the myc-tagged vasopressin V1aR in specific muscles, thus sensitizing them to circulating vasopressin. The correct localization on the surface of the fibers of the recombinant product was demonstrated by confocal immunofluorescence directed against the myc tag. V1aR overexpression dramatically enhanced regeneration. When compared with mock-transfected controls, V1aR overexpressing muscles exhibited significantly accelerated activation of satellite cells and increased expression of differentiation markers. Downstream of V1aR activation, calcineurin was strongly up-regulated and stimulated the expression of IL-4, a potent mediator of myogenic cell fusion. The central role of calcineurin in mediating V1aR-dependent myogenesis was also demonstrated by using its specific inhibitor, cyclosporine A. This study identifies skeletal muscle as a physiological target of hormones of the vasopressin family and reveals a novel in vivo role for vasopressin-dependent pathways. These findings unveil several steps, along a complex signaling pathway, that may be exploited as potential targets for the therapy of diseases characterized by altered muscle homeostasis and regeneration.

摘要

骨骼肌在机械性或病理性损伤后具有显著的再生能力。我们发现,加压素的V1a受体(V1aR),一种在体外刺激分化和肥大的强效生肌促进因子,在小鼠骨骼肌中表达,并在实验性损伤后的再生过程中受到调节。我们通过电穿孔进行基因传递,使特定肌肉中带有myc标签的加压素V1aR过表达,从而使其对循环中的加压素敏感。针对myc标签的共聚焦免疫荧光证明了重组产物在纤维表面的正确定位。V1aR过表达显著增强了再生能力。与mock转染对照相比,V1aR过表达的肌肉显示卫星细胞的激活明显加速,分化标志物的表达增加。在V1aR激活的下游,钙调神经磷酸酶强烈上调,并刺激IL-4的表达,IL-4是生肌细胞融合的强效介质。使用其特异性抑制剂环孢素A也证明了钙调神经磷酸酶在介导V1aR依赖性肌生成中的核心作用。这项研究将骨骼肌确定为加压素家族激素的生理靶点,并揭示了加压素依赖性途径在体内的新作用。这些发现揭示了一条复杂信号通路中的几个步骤,这些步骤可能被用作治疗以肌肉内环境稳态和再生改变为特征的疾病的潜在靶点。

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