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AAV-Mediated Administration of Myostatin Pro-Peptide Mutant in Adult Ldlr Null Mice Reduces Diet-Induced Hepatosteatosis and Arteriosclerosis

机译:AAV介导的成年Ldlr空小鼠Myostatin前肽突变体的管理减少饮食引起的肝硬皮病和动脉硬化

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摘要

Genetic disruption of myostatin or its related signaling is known to cause strong protection against diet-induced metabolic disorders. The translational value of these prior findings, however, is dependent on whether such metabolically favorable phenotype can be reproduced when myostatin blockade begins at an adult age. Here, we reported that AAV-mediated delivery of a myostatin pro-peptide D76A mutant in adult mice attenuates the development of hepatic steatosis and arteriosclerosis, two common diet-induced metabolic diseases. A single dose of AAV-D76A in adult Ldlr null mice resulted in sustained expression of myostatin pro-peptide in the liver. Compared to vehicle-treated mice, D76A-treated mice gained similar amount of lean and fat mass when fed a high fat diet. However, D76A-treated mice displayed significantly reduced aortic lesions and liver fat, in association with a reduction in hepatic expression of lipogenic genes and improvement in liver insulin sensitivity. This suggests that muscle and fat may not be the primary targets of treatment under our experimental condition. In support to this argument, we show that myostatin directly up-regulated lipogenic genes and increased fat accumulation in cultured liver cells. We also show that both myostatin and its receptor were abundantly expressed in mouse aorta. Cultured aortic endothelial cells responded to myostatin with a reduction in eNOS phosphorylation and an increase in ICAM-1 and VCAM-1 expression. Conclusions: AAV-mediated expression of myostatin pro-peptide D76A mutant in adult Ldlr null mice sustained metabolic protection without remarkable impacts on body lean and fat mass. Further investigations are needed to determine whether direct impact of myostatin on liver and aortic endothelium may contribute to the related metabolic phenotypes.
机译:已知肌生长抑制素或其相关信号的遗传破坏可对饮食引起的代谢紊乱提供强有力的保护。然而,这些先前发现的翻译价值取决于当成年肌生长抑制素阻滞开始时是否能够再现这种代谢有利的表型。在这里,我们报道了成年小鼠中肌生长抑制素前肽D76A突变体的AAV介导的传递减弱了两种常见饮食诱发的代谢性疾病-肝脏脂肪变性和动脉硬化的发展。在成年的Ldlr无效小鼠中单剂量的AAV-D76A导致了肌肉生长抑制素原肽在肝脏中的持续表达。与经媒介物处理的小鼠相比,经D76A处理的小鼠进食高脂饮食时获得的瘦肉和脂肪量相似。但是,用D76A处理的小鼠显示出主动脉病变和肝脂肪显着减少,同时脂肪生成基因的肝表达减少和肝胰岛素敏感性改善。这表明在我们的实验条件下,肌肉和脂肪可能不是治疗的主要目标。为了支持该论点,我们显示了肌生长抑制素直接上调了脂肪生成基因,并增加了培养肝细胞中脂肪的积累。我们还表明,肌生长抑制素及其受体都在小鼠主动脉中大量表达。培养的主动脉内皮细胞对肌生长抑制素有反应,eNOS磷酸化减少,ICAM-1和VCAM-1表达增加。结论:AAV介导的成年Ldlr缺失小鼠Myostatin前肽D76A突变体的表达具有代谢保护作用,而对体脂和脂肪量没有显着影响。需要进一步的研究以确定肌生长抑制素对肝脏和主动脉内皮的直接影响是否可能导致相关的代谢表型。

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  • 年(卷),期 -1(8),8
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  • 页码 e71017
  • 总页数 10
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