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Skeletal Muscle Anti-Atrophic Effects of Leucine Involve Myostatin Inhibition

机译:睫状体的骨骼肌抗萎缩作用涉及肌抑制素抑制作用

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Lack of mechanical load leads to skeletal muscle atrophy, and one major underlying mechanism involves the myostatin pathway that negatively regulates protein synthesis and also activates Atrogin-1/MAFbx and MuRF1 genes. In hindlimb immobilization, leucine was observed to attenuate the upregulation of the referred atrogenes, thereby shortening the impact on fiber cross-sectional area, nonetheless, the possible connection with myostatin is still elusive. This study sought to verify the impact of leucine supplementation on myostatin expression. Male Wistar rats were supplemented with leucine and hindlimb immobilized for 3 and 7 days, after which soleus muscles were removed for morphometric measurements and analyzed for gene and protein expression by real-time PCR and Western blotting, respectively. Muscle wasting was prominent 7 days after immobilization, as expected, leucine feeding mitigated this effect. Atrogin-1/MAFbx gene expression was upregulated only after 3 days of immobilization, and this effect was attenuated by leucine supplementation. Atrogin-1/MAFbx protein levels were elevated after 7 days of immobilization, which leucine supplementation was not able to lessen. On the other hand, myostatin gene expression was upregulated in immobilization for 3 and 7 days, which returned to normal levels after leucine supplementation. Myostatin protein levels followed gene expression at a 3-day time point only. Follistatin gene expression was upregulated during immobilization and accentuated by leucine after 3 days of supplementation. Concerning protein expression, follistatin was not altered neither by immobilization nor in immobilized animals treated with leucine. In conclusion, leucine protects against skeletal muscle mass loss during disuse, and the underlying molecular mechanisms appear to involve myostatin inhibition and Atrogin-1 normalization independently of follistatin signaling.
机译:缺乏机械负荷会导致骨骼肌萎缩,一个主要的潜在机制涉及肌生长抑制素途径,该途径负调节蛋白质合成,并激活阿托品-1/MAFbx和MuRF1基因。在后肢固定中,观察到亮氨酸可以减弱所指的萎缩基因的上调,从而缩短对纤维横截面积的影响,尽管如此,与肌生长抑制素的可能联系仍不清楚。本研究旨在验证补充亮氨酸对肌生长抑制素表达的影响。给雄性Wistar大鼠补充亮氨酸,并固定后肢3天和7天,之后移除比目鱼肌进行形态测量,并分别通过实时PCR和Western印迹分析基因和蛋白质表达。肌肉萎缩在固定7天后显著,正如预期的那样,亮氨酸喂养减轻了这种影响。阿托金-1/MAFbx基因表达仅在固定3天后上调,补充亮氨酸可减弱这种效应。阿托金-1/MAFbx蛋白水平在固定7天后升高,补充亮氨酸无法降低。另一方面,肌肉生长抑制素基因表达在固定3天和7天时上调,补充亮氨酸后恢复到正常水平。肌生长抑制素蛋白水平仅在3天时间点跟随基因表达。卵泡抑素基因表达在固定期间上调,并在补充3天后被亮氨酸强化。关于蛋白质表达,无论是固定化还是用亮氨酸处理的固定化动物,卵泡抑素都没有改变。总之,亮氨酸可以防止骨骼肌在停用期间的质量损失,其潜在的分子机制似乎与肌生长抑制素抑制和阿托品-1正常化无关,而与卵泡抑制素信号无关。

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