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RhoA mediates defective stem cell function and heterotopic ossification in dystrophic muscle of mice

机译:RhoA介导小鼠营养不良性肌肉的干细胞功能缺陷和异位骨化

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摘要

Heterotopic ossification (HO) and fatty infiltration (FI) often occur in diseased skeletal muscle and have been previously described in various animal models of Duchenne muscular dystrophy (DMD); however, the pathological mechanisms remain largely unknown. Dystrophin-deficient mdx mice and dystrophin/utrophin double-knockout (dKO) mice are mouse models of DMD; however, mdx mice display a strong muscle regeneration capacity, while dKO mice exhibit a much more severe phenotype, which is similar to patients with DMD. Our results revealed that more extensive HO, but not FI, occurred in the skeletal muscle of dKO mice versus mdx mice, and RhoA activation specifically occurred at the sites of HO. Moreover, the gene expression of RhoA, BMPs, and several inflammatory factors were significantly up-regulated in muscle stem cells isolated from dKO mice; while inactivation of RhoA in the cells with RhoA/ROCK inhibitor Y-27632 led to reduced osteogenic potential and improved myogenic potential. Finally, inactivation of RhoA signaling in the dKO mice with Y-27632 improved muscle regeneration and reduced the expression of BMPs, inflammation, HO, and intramyocellular lipid accumulation in both skeletal and cardiac muscle. Our results revealed that RhoA represents a major molecular switch in the regulation of HO and muscle regeneration in dystrophic skeletal muscle of mice.—Mu, X., Usas, A., Tang, Y., Lu, A., Wang, B., Weiss, K., Huard, J. RhoA mediates defective stem cell function and heterotopic ossification in dystrophic muscle of mice.
机译:异位骨化(HO)和脂肪浸润(FI)经常发生在患病的骨骼肌中,先前已在Duchenne肌营养不良症(DMD)的各种动物模型中进行了描述。但是,其病理机制仍不清楚。肌营养不良蛋白缺陷的mdx小鼠和肌营养不良蛋白/促肾上腺素双敲除(dKO)小鼠是DMD的小鼠模型。然而,mdx小鼠表现出很强的肌肉再生能力,而dKO小鼠表现出更为严重的表型,这与DMD患者相似。我们的研究结果表明,与mdx小鼠相比,dKO小鼠的骨骼肌中发生了更广泛的HO,而不是FI,并且RhoA激活特别发生在HO部位。此外,从dKO小鼠分离出的肌肉干细胞中,RhoA,BMPs和几种炎症因子的基因表达显着上调。而使用RhoA / ROCK抑制剂Y-27632灭活细胞中的RhoA可以降低成骨潜能并改善成肌潜能。最后,用Y-27632使dKO小鼠中的RhoA信号失活可改善肌肉再生,并减少骨骼肌和心肌中BMP的表达,炎症,HO和细胞内脂质蓄积。我们的结果表明,RhoA代表着小鼠营养不良性骨骼肌HO和肌肉再生调节的主要分子转换。-Mu,X.,Usas,A.,Tang,Y.,Lu,A.,Wang,B. ,Weiss,K.,Huard,J.RhoA介导小鼠营养不良性肌肉中的干细胞功能缺陷和异位骨化。

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