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Non-coding RNAs in skeletal muscle regeneration

机译:骨骼肌再生中的非编码RNA

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摘要

Following injury, skeletal muscles can regenerate from muscle specific stem cells, called satellite cells. Quiescent in uninjured muscles, satellite cells become activated, proliferate and differentiate into myotubes. Muscle regeneration occurs following distinct main overlapping phases, including inflammation, regeneration and maturation of the regenerated myofibers. Each step of muscle regeneration is orchestrated through complex signaling networks and gene regulatory networks, leading to the expression of specific set of genes in each concerned cell type. Apart from the well-established transcriptional mechanisms involving the myogenic regulatory factors of the MyoD family, increasing data indicate that each step of muscle regeneration is controlled by a wide range of non-coding RNAs. In this review, we discuss the role of two classes of non-coding RNAs (microRNAs and long non-coding RNAs) in the inflammatory, regeneration and maturation steps of muscle regeneration.
机译:受伤后,骨骼肌可从称为卫星细胞的特定于肌肉的干细胞再生。静止的肌肉静止不动,卫星细胞被激活,增殖并分化为肌管。肌肉再生发生在不同的主要重叠阶段之后,包括炎症,再生和再生的肌纤维成熟。肌肉再生的每个步骤都通过复杂的信号网络和基因调控网络进行协调,从而导致每种相关细胞类型中特定基因组的表达。除了成熟的涉及MyoD家族肌源性调节因子的转录机制外,越来越多的数据表明,肌肉再生的每个步骤均受多种非编码RNA的控制。在这篇综述中,我们讨论了两类非编码RNA(微RNA和长非编码RNA)在肌肉再生的炎症,再生和成熟步骤中的作用。

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