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亮氨酰-tRNA 合成酶的非翻译功能调控肌生成分化和骨骼肌再生。

Nontranslational function of leucyl-tRNA synthetase regulates myogenic differentiation and skeletal muscle regeneration.

机构信息

Department of Cell and Developmental Biology, University of Illinois at Urbana-Champaign, Illinois, USA.

Department of Molecular Medicine, School of Medicine, Gachon University, Incheon, South Korea.

出版信息

J Clin Invest. 2019 Apr 15;129(5):2088-2093. doi: 10.1172/JCI122560.

Abstract

Aside from its catalytic function in protein synthesis, leucyl-tRNA synthetase (LRS) has a nontranslational function in regulating cell growth via the mammalian target of rapamycin (mTOR) complex 1 (mTORC1) pathway by sensing amino acid availability. mTOR also regulates skeletal myogenesis, but the signaling mechanism is distinct from that in cell growth regulation. A role of LRS in myogenesis has not been reported. Here we report that LRS negatively regulated myoblast differentiation in vitro. This function of LRS was independent of its regulation of protein synthesis, and it required leucine-binding but not tRNA charging activity of LRS. Local knock down of LRS accelerated muscle regeneration in a mouse injury model, and so did the knock down of Rag or Raptor. Further in vitro studies established a Rag-mTORC1 pathway, which inhibits the IRS1-PI3K-Akt pathway, to be the mediator of the nontranslational function of LRS in myogenesis. BC-LI-0186, an inhibitor reported to disrupt LRS-Rag interaction, promoted robust muscle regeneration with enhanced functional recovery, and this effect was abolished by cotreatment with an Akt inhibitor. Taken together, our findings revealed what we believe is a novel function for LRS in controlling the homeostasis of myogenesis, and suggested a potential therapeutic strategy to target a noncanonical function of a housekeeping protein.

摘要

除了在蛋白质合成中具有催化功能外,亮氨酰-tRNA 合成酶(LRS)还通过感应氨基酸可用性,通过哺乳动物雷帕霉素靶蛋白(mTOR)复合物 1(mTORC1)途径发挥非翻译功能来调节细胞生长。mTOR 还调节骨骼肌生成,但信号机制与细胞生长调节不同。LRS 在成肌中的作用尚未报道。在这里,我们报告 LRS 负调节体外成肌细胞分化。LRS 的这种功能不依赖于其对蛋白质合成的调节,并且需要 LRS 的亮氨酸结合但不是 tRNA 充电活性。LRS 的局部敲低在小鼠损伤模型中加速了肌肉再生,Rag 或 Raptor 的敲低也是如此。进一步的体外研究建立了 Rag-mTORC1 途径,该途径抑制 IRS1-PI3K-Akt 途径,作为 LRS 在成肌中的非翻译功能的介导物。BC-LI-0186 是一种据报道破坏 LRS-Rag 相互作用的抑制剂,可促进肌肉再生,增强功能恢复,而用 Akt 抑制剂共同处理则会消除这种作用。总之,我们的研究结果揭示了 LRS 在控制成肌中动态平衡方面的一个新功能,并提出了一种潜在的治疗策略,以针对管家蛋白的非典型功能。

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