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低剂量二甲双胍和亮氨酸鸡尾酒可预防肌管萎缩引起的细胞衰老和蛋白质稳态失调。

Cellular senescence and disrupted proteostasis induced by myotube atrophy are prevented with low-dose metformin and leucine cocktail.

机构信息

Department of Physical Therapy and Athletic, University of Utah, Salt Lake City, UT 84112, USA.

Department of Nutrition and Integrative Physiology, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

Aging (Albany NY). 2023 Mar 20;15(6):1808-1832. doi: 10.18632/aging.204600.

Abstract

Aging coincides with the accumulation of senescent cells within skeletal muscle that produce inflammatory products, known as the senescence-associated secretory phenotype, but the relationship of senescent cells to muscle atrophy is unclear. Previously, we found that a metformin + leucine (MET+LEU) treatment had synergistic effects in aged mice to improve skeletal muscle structure and function during disuse atrophy. Therefore, the study's purpose was to determine the mechanisms by which MET+LEU exhibits muscle atrophy protection and if this occurs through cellular senescence. C2C12 myoblasts differentiated into myotubes were used to determine MET+LEU mechanisms during atrophy. Additionally, aged mouse single myofibers and older human donor primary myoblasts were individually isolated to determine the translational potential of MET+LEU on muscle cells. MET+LEU (25 + 125 μM) treatment increased myotube differentiation and prevented myotube atrophy. Low concentration (0.1 + 0.5 μM) MET+LEU had unique effects to prevent muscle atrophy and increase transcripts related to protein synthesis and decrease transcripts related to protein breakdown. Myotube atrophy resulted in dysregulated proteostasis that was reversed with MET+LEU and individually with proteasome inhibition (MG-132). Inflammatory and cellular senescence transcriptional pathways and respective transcripts were increased following myotube atrophy yet reversed with MET+LEU treatment. Dasatinib + quercetin (D+Q) senolytic prevented myotube atrophy similar to MET+LEU. Finally, MET+LEU prevented loss in myotube size in alternate models of muscle atrophy as well as in aged myofibers while, in human primary myotubes, MET+LEU prevented reductions in myonuclei fusion. These data support that MET+LEU has skeletal muscle cell-autonomous properties to prevent atrophy by reversing senescence and improving proteostasis.

摘要

衰老是与骨骼肌中衰老细胞的积累同时发生的,这些细胞会产生炎症产物,称为衰老相关分泌表型,但衰老细胞与肌肉萎缩的关系尚不清楚。之前,我们发现二甲双胍+亮氨酸(MET+LEU)治疗在衰老小鼠中具有协同作用,可改善废用性萎缩期间的骨骼肌结构和功能。因此,本研究的目的是确定 MET+LEU 表现出肌肉萎缩保护作用的机制,以及这种作用是否通过细胞衰老发生。C2C12 成肌细胞分化为肌管,用于确定 MET+LEU 在萎缩过程中的机制。此外,还单独分离了衰老小鼠的单个肌纤维和老年供体原代成肌细胞,以确定 MET+LEU 对肌肉细胞的转化潜力。MET+LEU(25+125 μM)处理可增加肌管分化并防止肌管萎缩。低浓度(0.1+0.5 μM)MET+LEU 具有独特的作用,可以防止肌肉萎缩并增加与蛋白质合成相关的转录物,减少与蛋白质分解相关的转录物。肌管萎缩导致蛋白质稳态失调,用 MET+LEU 以及单独用蛋白酶体抑制剂(MG-132)可以逆转这种失调。肌管萎缩后,炎症和细胞衰老转录途径及其各自的转录物增加,但用 MET+LEU 处理后可逆转。Dasatinib+槲皮素(D+Q)细胞溶解剂可防止肌管萎缩,与 MET+LEU 相似。最后,MET+LEU 可防止在其他肌肉萎缩模型以及衰老肌纤维中肌管大小的丢失,而在人原代肌管中,MET+LEU 可防止肌细胞核融合减少。这些数据表明,MET+LEU 具有骨骼肌细胞自主特性,可通过逆转衰老和改善蛋白质稳态来防止萎缩。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea28/10085594/7665c77e5027/aging-15-204600-g001.jpg

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