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FOXO1 delays skeletal muscle regeneration and suppresses myoblast proliferation
Authors:Atsushi Yamashita  Yukino Hatazawa  Yuma Hirose  Yusuke Ono
Institution:1. Graduate School of Life and Environmental Sciences, Kyoto Prefectural University, Kyoto, Japan;2. Japan Society for the Promotion of Science, Tokyo, Japan;3. Graduate School of Biomedical Sciences, Nagasaki University, Nagasaki, Japan
Abstract:Unloading stress, such as bed rest, inhibits the regenerative potential of skeletal muscles; however, the underlying mechanisms remain largely unknown. FOXO1 expression, which induces the upregulated expression of the cell cycle inhibitors p57 and Gadd45α, is known to be increased in the skeletal muscle under unloading conditions. However, there is no report addressing FOXO1-induced inhibition of myoblast proliferation. Therefore, we induced muscle injury by cardiotoxin in transgenic mice overexpressing FOXO1 in the skeletal muscle (FOXO1-Tg mice) and observed regeneration delay in skeletal muscle mass and cross-sectional area in FOXO1-Tg mice. Increased p57 and Gadd45α mRNA levels, and decreased proliferation capacity were observed in C2C12 myoblasts expressing a tamoxifen-inducible active form of FOXO1. These results suggest that decreased proliferation capacity of myoblasts by FOXO1 disrupts skeletal muscle regeneration under FOXO1-increased conditions, such as unloading.
Keywords:FOXO1  cell proliferation  skeletal muscle
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