p53在运动中骨骼肌适应中的作用:文献综述

Amber Lu
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摘要

导读:由于骨骼肌与生理健康的天然关系,骨骼肌已在各种情况下进行了研究。最常见的是,在运动过程中分析它,以确定由特定的体内平衡不平衡引起的适应。这些不平衡推动了对p53的更多研究,p53是一种以调节细胞稳定性而闻名的肿瘤抑制因子。方法:本文献综述将通过初步研究来确定p53在运动过程中骨骼肌肥大、线粒体生物发生和血管生成中的作用。结果:在运动期间和运动后的骨骼肌适应过程中,观察到与肥大、线粒体生物发生和血管生成相关的基因表达差异,这取决于p53的含量和活性。讨论:p53含量水平被证明在运动后立即导致骨骼肌萎缩,而对线粒体生物发生的影响很小。相反,p53活性更可能是线粒体水平的影响因素。此外,通过间接途径,p53似乎与骨骼肌血管生成的增加负相关。结论:对p53的研究继续表达了该蛋白在肿瘤抑制作用之外的重要性。本综述通过分析其与运动诱导的骨骼肌适应的相互作用,强调了p53的替代作用。
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The Role of p53 in Skeletal Muscle Adaptation During Exercise: A Literature Review
Introduction: Due to its natural relationship with physiological health, skeletal muscle has been studied in a variety of contexts. Most commonly, it is analyzed during exercise to determine the adaptations caused by specific homeostatic imbalances. These imbalances pushed for more research in p53, a tumour suppressor known for regulating cellular stability. Methods: This literature review will be a narrative review using primary studies to determine the role of p53 in hypertrophy, mitochondrial biogenesis, and angiogenesis of skeletal muscles during exercise. Results: Differences in gene expression related to hypertrophy, mitochondrial biogenesis, and angiogenesis were observed during skeletal muscle adaptations dependent on p53 content and activity during and after exercise. Discussion: p53 content level was shown to contribute to skeletal muscle atrophy immediately following exercise, while having minimal effect on mitochondrial biogenesis. Rather, p53 activity was seen to be a more likely effector of mitochondrial levels. Moreover, through indirect pathways, p53 appears to negatively correlate with increases of angiogenesis in skeletal muscle. Conclusion: Research on p53 continues to express the importance of the protein beyond its role as a tumour suppressor. This review highlights alternative roles of p53 by analyzing its interactions in relation to exercise-induced adaptations of skeletal muscle.
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