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Targeted over-expression of PPARγ in pig skeletal muscle improves oxidative fiber formation and intramuscular fat deposition

Gu, H.; Zhou, Y.; Yang, J. Z.; Li, J. N.; Peng, Y. X.; Zhang, X.; Miao, Y. L.; Jiang, W.; Bu, G. W.; Hou, L. M.; Li, T.; Zhang, L.; Xia, X. L.; Ma, Z. Y.; Xiong, Y. Z.; Zuo, B.

2020-06-25 genetics
10.1101/2020.06.24.168641 bioRxiv
Show abstract

PPAR{gamma} is a master regulator of adipogenesis and lipogenesis. To understand its roles in fat deposition and fiber formation in skeletal muscle, we successfully generated muscle-specific overexpression of PPAR{gamma} by pig cloning procedures. The content of intramuscular fat was significantly increased in PPAR{gamma} transgenic pigs while the muscle mass as lean percentage of body weight was not changed. The proteomics analysis demonstrated oxidative metabolism of fatty acids and respiratory chain were increased in PPAR{gamma} pigs. Furthermore, expressions of oxidative muscle fiber-related genes such as MyHC1 and TNNT1 were enhanced. CAMK2, MEF2 and PGC1 were also significantly increased in skeletal muscle of PPAR{gamma} pigs, indicating that Ca2+-sensitive phosphatases and kinases may play an important role in the switch of muscle fiber types when PPAR{gamma} activity is elevated in skeletal muscle. The results support skeletal muscle-specific overexpression of PPAR{gamma} can promote oxidative fiber formation and intramuscular fat deposition in pigs.

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