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首页> 外文期刊>Nature Communications >Depletion of HuR in murine skeletal muscle enhances exercise endurance and prevents cancer-induced muscle atrophy
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Depletion of HuR in murine skeletal muscle enhances exercise endurance and prevents cancer-induced muscle atrophy

机译:患有鼠骨骼肌的缺陷增强了锻炼耐久性并妨碍癌症诱导的肌肉萎缩

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The master posttranscriptional regulator HuR promotes muscle fiber formation in cultured muscle cells. However, its impact on muscle physiology and function in vivo is still unclear. Here, we show that muscle-specific HuR knockout (muHuR-KO) mice have high exercise endurance that is associated with enhanced oxygen consumption and carbon dioxide production. muHuR-KO mice exhibit a significant increase in the proportion of oxidative type I fibers in several skeletal muscles. HuR mediates these effects by collaborating with the mRNA decay factor KSRP to destabilize the PGC-1α mRNA. The type I fiber-enriched phenotype of muHuR-KO mice protects against cancer cachexia-induced muscle loss. Therefore, our study uncovers that under normal conditions HuR modulates muscle fiber type specification by promoting the formation of glycolytic type II fibers. We also provide a proof-of-principle that HuR expression can be targeted therapeutically in skeletal muscles to combat cancer-induced muscle wasting.
机译:Master Prostrancard调节剂HUR促进培养的肌肉细胞中的肌肉纤维形成。然而,它对体内对肌肉生理学和功能的影响仍然不清楚。在这里,我们表明肌肉特异性围击(Muhur-Ko)小鼠具有高锻炼耐久性,与增强的氧气消耗和二氧化碳产生相关。 Muhur-Ko小鼠在几个骨骼肌中表现出氧化型I纤维比例的显着增加。 HER通过与mRNA衰减因子KSRP协作以使PGC-1αmRNA的破坏来介导这些效果。 I型纤维富集的Muhur-Ko小鼠表型保护免受癌症恶性症诱导的肌肉损失。因此,我们的研究揭示了在正常情况下,扰动通过促进糖酵解II型纤维的形成来调节肌纤维型规格。我们还提供了一个原则上,颈部表达可以在骨骼肌中治疗,以打击癌症诱导的肌肉浪费。

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