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Physiological role of receptor activator nuclear factor-kB (RANK) in denervation-induced muscle atrophy and dysfunction

机译:受体激活因子核因子-kB(RANK)在失神经引起的肌肉萎缩和功能障碍中的生理作用

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摘要

The bone remodeling and homeostasis are mainly controlled by the receptor-activator of nuclear factor kB (RANK), its ligand RANKL, and the soluble decoy receptor osteoprotegerin (OPG) pathway. While there is a strong association between osteoporosis and skeletal muscle dysfunction, the functional relevance of a particular biological pathway that synchronously regulates bone and skeletal muscle physiopathology remains elusive. Our recent article published in the American Journal of Physiology (Cell Physiology) showed that RANK is also expressed in fully differentiated C2C12 myotubes and skeletal muscles. We used the Cre-Lox approach to inactivate muscle RANK (RANKmko) and showed that RANK deletion preserves the force of denervated fast-twitch EDL muscles. However, RANK deletion had no positive impact on slow-twitch Sol muscles. In addition, denervating RANKmko EDL muscles induced an increase in the total calcium concentration ([CaT]), which was associated with a surprising decrease in SERCA activity. Interestingly, the levels of STIM-1, which mediates Ca2+ influx following the depletion of SR Ca2+ stores, were markedly higher in denervated RANKmko EDL muscles. We speculated that extracellular Ca2+ influx mediated by STIM-1 may be important for the increase in [CaT] and the gain of force in denervated RANKmko EDL muscles. Overall, these findings showed for the first time that the RANKL/RANK interaction plays a role in denervation-induced muscle atrophy and dysfunction.
机译:骨重塑和体内平衡主要受核因子kB(RANK)的受体激活剂,其配体RANKL和可溶性诱饵受体骨保护素(OPG)途径控制。尽管骨质疏松症与骨骼肌功能障碍之间存在很强的联系,但同步调节骨骼和骨骼肌生理病理的特定生物学途径的功能相关性仍然难以捉摸。我们最近发表在《美国生理学杂志》(Cell Physiology)上的文章显示,RANK在完全分化的C2C12肌管和骨骼肌中也表达。我们使用Cre-Lox方法使RANK肌肉失活(RANK mko ),结果表明RANK缺失保留了失神经的快速抽搐EDL肌肉的力量。但是,RANK删除对慢抽动Sol肌肉没有积极影响。此外,使RANK mko EDL肌肉失神经导致总钙浓度([CaT])的增加,这与SERCA活性的惊人降低有关。有趣的是,SR的Ca 2 + 库耗尽后,介导Ca 2 + 涌入的STIM-1的水平在失神经的RANK mko < / sup> EDL肌肉。我们推测,由STIM-1介导的细胞外Ca 2 + 内流可能对失神经的RANK mko EDL肌肉中[CaT]的增加和力的增加很重要。总体而言,这些发现首次表明RANKL / RANK相互作用在失神经引起的肌肉萎缩和功能障碍中起作用。

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