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Dietary methionine restriction: Effects on glucose tolerance, lipid content and micro-RNA composition in the muscle of rainbow trout

机译:膳食蛋氨酸限制:对虹鳟鱼肌肉中的葡萄糖耐量,脂质含量和微RNA组成的影响

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Lean muscle mass plays an important role in overall health, as altered skeletal muscle metabolism can impact both the incidence and prevention of conditions related to metabolic health. Intriguingly, dietary methionine restriction (MR) has been shown to ameliorate this phenotype over time potentially through mechanisms related to changes in myogenic precursor cell (MPC) differentiation status. Recently the role of micro-RNAs (miRs) in regulating the expression of muscle specific transcription factors myoD and myogenin as well as signaling molecules involved in skeletal muscle differentiation has been reported in vitro. We performed an 8 week feeding trial to determine if MR in vivo could alter miR abundance as well as change metabolic markers. Results show changes in muscle miR abundance for miR-133a at 4 weeks with no significant difference seen in miR-210 or miR-206. After 8 weeks of MR feeding fish demonstrated increased clearance of glucose, increased fat accumulation in the liver, and decreased fat accumulation in the muscle. These data demonstrate conservation of MR effects on fish metabolism, and suggest, for the first time, that miR-133a might play a role in tissue response to MR.
机译:瘦肌肉质量在整体健康中起着重要作用,因为改变的骨骼肌代谢可以影响与代谢健康有关的病症的发病率和预防。有趣的是,已经证明膳食蛋氨酸限制(MR)可以通过与肌病性前体细胞(MPC)分化状态有关的机制来改善这种表型随着时间的推移。最近,在体外报道了微rNA(mirs)在调节肌肉特异性转录因子Myod和肌菌素的表达以及参与骨骼肌分化中的信号分子的作用。我们进行了8周的饲养试验,以确定体内MR是否可以改变MIR丰富以及改变代谢标志物。结果显示4周MIR-133A对miR-133a的肌肉MiR丰富的变化,在miR-210或miR-206中没有显着差异。 8周后,饲养鱼的喂养先生显示出葡萄糖的许可,肝脏脂肪累积增加,并降低肌肉积累。这些数据表明了对鱼类代谢的MR影响的保护,并尽先建议miR-133a可能在组织反应中发挥作用。

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