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首页> 外文期刊>The journal of clinical investigation >Nuclear receptor/microRNA circuitry links muscle fiber type to energy metabolism
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Nuclear receptor/microRNA circuitry links muscle fiber type to energy metabolism

机译:核受体/ microRNA电路将肌肉纤维类型与能量代谢联系起来

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The mechanisms involved in the coordinate regulation of the metabolic and structural programs controlling muscle fitness and endurance are unknown. Recently, the nuclear receptor PPARβ/δ was shown to activate muscle endurance programs in transgenic mice. In contrast, muscle-specific transgenic overexpression of the related nuclear receptor, PPARα, results in reduced capacity for endurance exercise. We took advantage of the divergent actions of PPARβ/δ and PPARα to explore the downstream regulatory circuitry that orchestrates the programs linking muscle fiber type with energy metabolism. Our results indicate that, in addition to the well-established role in transcriptional control of muscle metabolic genes, PPARβ/δ and PPARα participate in programs that exert opposing actions upon the type I fiber program through a distinct muscle microRNA (miRNA) network, dependent on the actions of another nuclear receptor, estrogen-related receptor γ (ERRγ). Gain-of-function and loss-of-function strategies in mice, together with assessment of muscle biopsies from humans, demonstrated that type I muscle fiber proportion is increased via the stimulatory actions of ERRγ on the expression of miR-499 and miR-208b. This nuclear receptor/miRNA regulatory circuit shows promise for the identification of therapeutic targets aimed at maintaining muscle fitness in a variety of chronic disease states, such as obesity, skeletal myopathies, and heart failure.
机译:参与控制肌肉适应性和耐力的代谢和结构程序的协调调节的机制尚不清楚。最近,核受体PPARβ/δ被证明可以激活转基因小鼠的肌肉耐力程序。相反,相关核受体PPARα的肌肉特异性转基因过度表达导致耐力运动能力下降。我们利用PPARβ/δ和PPARα的不同作用来探索下游调节电路,该电路协调了将肌肉纤维类型与能量代谢联系起来的程序。我们的结果表明,除了在肌肉代谢基因的转录控制中已确立的作用外,PPARβ/δ和PPARα参与通过独特的肌肉microRNA(miRNA)网络对I型纤维程序施加相反作用的程序,在另一个核受体,雌激素相关受体γ(ERRγ)的作用。小鼠的功能获得和功能丧失策略以及对人类肌肉活检的评估表明,通过ERRγ对miR-499和miR-208b表达的刺激作用,I型肌纤维比例增加。该核受体/ miRNA调节电路显示出有望鉴定旨在在各种慢性疾病(例如肥胖症,骨骼肌病和心力衰竭)中维持肌肉健康的治疗目标。

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