p53 improves aerobic exercise capacity and augments skeletal muscle mitochondrial DNA content

p53 可提高有氧运动能力并增加骨骼肌线粒体 DNA 含量

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作者:Joon-Young Park, Ping-Yuan Wang, Takumi Matsumoto, Ho Joong Sung, Wenzhe Ma, Jeong W Choi, Stasia A Anderson, Scot C Leary, Robert S Balaban, Ju-Gyeong Kang, Paul M Hwang

Conclusions

Our current findings indicate that p53 promotes aerobic metabolism and exercise capacity by using different mitochondrial genes and mechanisms in a tissue-specific manner.

Objective

The purpose of this study was to understand the genetic mechanism by which p53 regulates aerobic exercise capacity.

Results

Using a variety of physiological, metabolic, and molecular techniques, we further characterized maximum exercise capacity and the effects of training, measured various nonmitochondrial and mitochondrial determinants of exercise capacity, and examined putative regulators of mitochondrial biogenesis. As p53 did not affect baseline cardiac function or inotropic reserve, we focused on the involvement of skeletal muscle and now report a wider role for p53 in modulating skeletal muscle mitochondrial function. p53 interacts with Mitochondrial Transcription Factor A (TFAM), a nuclear-encoded gene important for mitochondrial DNA (mtDNA) transcription and maintenance, and regulates mtDNA content. The increased mtDNA in p53(+/+) compared to p53(-/-) mice was more marked in aerobic versus glycolytic skeletal muscle groups with no significant changes in cardiac tissue. These in vivo observations were further supported by in vitro studies showing overexpression of p53 in mouse myoblasts increases both TFAM and mtDNA levels whereas depletion of TFAM by shRNA decreases mtDNA content. Conclusions: Our current findings indicate that p53 promotes aerobic metabolism and exercise capacity by using different mitochondrial genes and mechanisms in a tissue-specific manner.

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