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骨骼肌特异性诱导 AMPKα1/α2 敲除小鼠出现肌肉无力、糖原耗竭和纤维化,在废用性萎缩期间持续存在。

Skeletal muscle-specific inducible AMPKα1/α2 knockout mice develop muscle weakness, glycogen depletion, and fibrosis that persists during disuse atrophy.

机构信息

Department of Physical Therapy and Athletic Training, University of Utah, Salt Lake City, Utah, United States.

Spencer Fox Eccles School of Medicine, University of Utah, Salt Lake City, Utah, United States.

出版信息

Am J Physiol Endocrinol Metab. 2024 Jan 1;326(1):E50-E60. doi: 10.1152/ajpendo.00261.2023. Epub 2023 Nov 29.

Abstract

The 5' adenosine monophosphate-activated protein kinase (AMPK) is an important skeletal muscle regulator implicated as a possible therapeutic target to ameliorate the local undesired deconditioning of disuse atrophy. However, the muscle-specific role of AMPK in regulating muscle function, fibrosis, and transcriptional reprogramming during physical disuse is unknown. The purpose of this study was to determine how the absence of both catalytic subunits of AMPK in skeletal muscle influences muscle force production, collagen deposition, and the transcriptional landscape. We generated skeletal muscle-specific tamoxifen-inducible AMPKα1/α2 knockout () mice that underwent 14 days of hindlimb unloading (HU) or remained ambulatory for 14 days (AMB). We found that during ambulatory conditions altered body weight and myofiber size, decreased muscle function, depleted glycogen stores and TBC1 domain family member 1 (TBC1D1) phosphorylation, increased collagen deposition, and altered transcriptional pathways. Primarily, pathways related to cellular senescence and mitochondrial biogenesis and function were influenced by the absence of AMPKα. The effects of persisted, but were not worsened, following hindlimb unloading. Together, we report that AMPKα is necessary to maintain skeletal muscle quality. We determined that skeletal muscle-specific AMPKα knockout (KO) mice display functional, fibrotic, and transcriptional alterations before and during muscle disuse atrophy. We also observed that AMPKα KO drives muscle fibrosis and pathways related to cellular senescence that continues during the hindlimb unloading period.

摘要

5' 腺苷一磷酸激活的蛋白激酶 (AMPK) 是一种重要的骨骼肌调节因子,被认为是一种可能的治疗靶点,可以改善废用性萎缩引起的局部不良去适应。然而,AMPK 在调节肌肉功能、纤维化和转录重编程方面在骨骼肌中的特定作用尚不清楚。本研究旨在确定骨骼肌中 AMPK 的两个催化亚基缺失如何影响肌肉力量产生、胶原蛋白沉积和转录谱。我们生成了骨骼肌特异性他莫昔芬诱导的 AMPKα1/α2 敲除 () 小鼠,这些小鼠经历了 14 天的后肢去负荷 (HU) 或保持 14 天的活动 (AMB)。我们发现,在活动条件下,AMPKα 改变了体重和肌纤维大小,降低了肌肉功能,耗尽了糖原储存和 TBC1 结构域家族成员 1 (TBC1D1) 的磷酸化,增加了胶原蛋白沉积,并改变了转录途径。主要是,与细胞衰老和线粒体生物发生和功能相关的途径受到 AMPKα 的影响。后肢去负荷后,AMPKα 的缺失仍然存在,但没有恶化。总之,我们报告 AMPKα 对于维持骨骼肌质量是必需的。我们确定,骨骼肌特异性 AMPKα 敲除 (KO) 小鼠在肌肉废用性萎缩之前和期间表现出功能、纤维化和转录改变。我们还观察到,AMPKα KO 驱动肌肉纤维化和与细胞衰老相关的途径,这些途径在后肢去负荷期间持续存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/626c/11193510/0e0a19307e1d/e-00261-2023r01.jpg

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