首页> 美国卫生研究院文献>Aging (Albany NY) >Age-related deficits in skeletal muscle recovery following disuse are associated with neuromuscular junction instability and ER stress not impaired protein synthesis
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Age-related deficits in skeletal muscle recovery following disuse are associated with neuromuscular junction instability and ER stress not impaired protein synthesis

机译:废用后骨骼肌恢复与年龄相关的缺陷与神经肌肉接头的不稳定性和内质网应激有关而不是蛋白质合成受损

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摘要

Age-related loss of muscle mass and strength can be accelerated by impaired recovery of muscle mass following a transient atrophic stimulus. The aim of this study was to identify the mechanisms underlying the attenuated recovery of muscle mass and strength in old rats following disuse-induced atrophy. Adult (9 month) and old (29 month) male F344BN rats underwent hindlimb unloading (HU) followed by reloading. HU induced significant atrophy of the hindlimb muscles in both adult (17-38%) and old (8-29%) rats, but only the adult rats exhibited full recovery of muscle mass and strength upon reloading. Upon reloading, total RNA and protein synthesis increased to a similar extent in adult and old muscles. At baseline and upon reloading, however, proteasome-mediated degradation was suppressed leading to an accumulation of ubiquitin-tagged proteins and p62. Further, ER stress, as measured by CHOP expression, was elevated at baseline and upon reloading in old rats. Analysis of mRNA expression revealed increases in HDAC4, Runx1, myogenin, Gadd45a, and the AChRs in old rats, suggesting neuromuscular junction instability/denervation. Collectively, our data suggests that with aging, impaired neuromuscular transmission and deficits in the proteostasis network contribute to defects in muscle fiber remodeling and functional recovery of muscle mass and strength.
机译:短暂萎缩刺激后,肌肉质量恢复受损可加速与年龄相关的肌肉质量和力量丧失。这项研究的目的是确定停用引起的萎缩后老年大鼠肌肉质量和力量恢复减弱的潜在机制。成年(9个月)和成年(29个月)雄性F344BN大鼠经历后肢卸载(HU),然后重新加载。 HU在成年(17-38%)和成年(8-29%)大鼠中均引起后肢肌肉明显萎缩,但只有成年大鼠在重装时表现出肌肉量和力量的完全恢复。重新加载后,成年和老年肌肉的总RNA和蛋白质合成增加了类似的程度。然而,在基线和重新加载时,蛋白酶体介导的降解受到抑制,导致泛素标记的蛋白和p62积累。此外,通过CHOP表达测量的ER应激在基线和重负荷后在老年大鼠中升高。对mRNA表达的分析表明,老年大鼠的HDAC4,Runx1,肌生成素,Gadd45a和AChRs增加,提示神经肌肉连接不稳定/神经支配。总体而言,我们的数据表明,随着年龄的增长,神经肌肉传导受损和蛋白固定网络的缺陷会导致肌肉纤维重塑以及肌肉质量和力量的功能恢复方面的缺陷。

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