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首页> 外文期刊>The Journal of Physiology >Alterations in the muscle force transfer apparatus in aged rats during unloading and reloading: impact of microRNA‐31
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Alterations in the muscle force transfer apparatus in aged rats during unloading and reloading: impact of microRNA‐31

机译:卸载和重新加载期间老年大鼠肌肉转移装置的改变:MicroRNA-31的影响

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摘要

Key points Force transfer is integral for maintaining skeletal muscle structure and function. One important component is dystrophin. There is limited understanding of how force transfer is impacted by age and loading. Here, we investigate the force transfer apparatus in muscles of adult and old rats exposed to periods of disuse and reloading. Our results demonstrate an increase in dystrophin protein during the reloading phase in the adult tibialis anterior muscle that is delayed in the old muscle. The consequence of this delay is an increased susceptibility towards contraction‐induced muscle injury. Central to the lack of dystrophin protein is an increase in miR‐31, a microRNA that inhibits dystrophin translation. In vivo electroporation with a miR‐31 sponge led to increased dystrophin protein and decreased contraction‐induced muscle injury in old skeletal muscle. Overall, our results detail the importance of the force transfer apparatus and provide new mechanisms for contraction‐induced injury in ageing skeletal muscle. Abstract In healthy muscle, the dystrophin‐associated glycoprotein complex (DGC), the integrin/focal adhesion complex, intermediate filaments and Z‐line proteins transmit force from the contractile proteins to the extracellular matrix. How loading and age affect these proteins is poorly understood. The experiments reported here sought to determine the effect of ageing on the force transfer apparatus following muscle unloading and reloading. Adult (9?months) and old (28?months) rats were subjected to 14?days of hindlimb unloading and 1, 3, 7 and 14?days of reloading. The DGC complex, intermediate filament and Z‐line protein and mRNA levels, as well as dystrophin‐targeting miRNAs (miR‐31, ‐146b and ‐374) were examined in the tibialis anterior (TA) and medial gastrocnemius muscles at both ages. There was a significant increase in dystrophin protein levels (2.79‐fold) upon 3?days of reloading in the adult TA muscle that did not occur in the old rats ( P ?≤?0.05), and the rise in dystrophin protein occurred independent of dystrophin mRNA. The disconnect between dystrophin protein and mRNA levels can partially be explained by age‐dependent differences in miR‐31. The impaired dystrophin response in aged muscle was followed by an increase in other force transfer proteins (β‐dystroglycan, desmuslin and LIM) that was not sufficient to prevent membrane disruption and muscle injury early in the reloading period. Inserting a miR‐31 sponge increased dystrophin protein and decreased contraction‐induced injury in the TA ( P ?≤?0.05). Collectively, these data suggest that increased miR‐31 with age contributes to an impaired dystrophin response and increased muscle injury after disuse.
机译:要点力的传递是维持骨骼肌肉的结构和功能组成。其中一个重要的组成部分是抗肌萎缩蛋白。还有就是如何传力受年龄和加载影响有限的理解。在这里,我们探讨成人肌肉暴露在废弃和重装期间老年大鼠的力传输设备。我们的研究结果表明在成人重新加载阶段增加了肌营养不良蛋白胫骨是在旧的肌肉延迟前肌。这种延迟的后果是对收缩引起的肌肉损伤的易感性增加。中央缺少抗肌萎缩蛋白蛋白质是增加的miR-31,微RNA抑制肌营养不良蛋白的翻译。在用的miR-31海绵导致增加的肌营养不良蛋白和老年骨骼肌减少收缩引起的肌肉损伤体内电穿孔。总的来说,我们的结果详细的力传输设备的重要性,并在老化骨骼肌提供的收缩引起的损伤的新机制。摘要健康肌肉,肌营养不良蛋白相关的糖蛋白复合物(DGC),整联/粘着斑复合体,中间丝和Z线蛋白质发射从收缩蛋白到细胞外基质的力。装载和年龄如何影响这些蛋白质是知之甚少。实验报告在这里试图确定老化的传力装置下面的肌肉卸载和重装的效果。成人(9?个月)和旧的(28?个月)大鼠进行重装的14?后肢卸载和1,3,7和14的天?天。的DGC复合物,中间丝和Z线蛋白和mRNA水平,以及肌营养不良蛋白 - 靶向的miRNA(MIR-31,-146b和-374)在胫骨前肌(TA)和在两个年龄内侧腓肠肌进行了研究。有在3?在成人胫前肌重装的日子,并没有在老年大鼠发生在抗肌萎缩蛋白水平显著上升(2.79倍)(P?≤?0.05),而在抗肌萎缩蛋白的上涨发生独立的抗肌萎缩蛋白的mRNA。肌营养不良蛋白和mRNA水平之间的断开可以部分由年龄依赖性差异的miR-31说明。老年肌肉受损肌营养不良蛋白响应随后的增加,这是不足够的,以防止膜破裂和肌肉损伤的重装期间早期其它力转移蛋白(β-肌营养不良,desmuslin和LIM)。插入的miR-31海绵增加肌营养不良蛋白,并在TA(P 2≤?0.05)降低的收缩引起的损伤。总的来说,这些数据表明,增加的miR-31与年龄有利于受损的肌营养不良蛋白的反应和废弃后增加肌肉损伤。

著录项

  • 来源
    《The Journal of Physiology》 |2018年第14期|共18页
  • 作者单位

    Department of NeurobiologyUniversity of California DavisDavis CA USA;

    Department of NeurobiologyUniversity of California DavisDavis CA USA;

    Department of Physiology and Membrane BiologyUniversity of California DavisDavis CA USA;

    Department of Physiology and Membrane BiologyUniversity of California DavisDavis CA USA;

    Department of NeurobiologyUniversity of California DavisDavis CA USA;

    Department of Internal MedicineUniversity of IowaIowa City IA USA;

    MolecularUniversity of California DavisDavis CA USA;

    Department of Internal MedicineUniversity of IowaIowa City IA USA;

    Department of NeurobiologyUniversity of California DavisDavis CA USA;

    Department of NeurobiologyUniversity of California DavisDavis CA USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

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