Matheny Ronald W, Riddle-Kottke Melissa A, Leandry Luis A, Lynch Christine M, Abdalla Mary N, Geddis Alyssa V, Piper David R, Zhao Jean J
Military Performance Division, U.S. Army Research Institute of Environmental Medicine, Natick, Massachusetts, USA
Military Performance Division, U.S. Army Research Institute of Environmental Medicine, Natick, Massachusetts, USA.
Mol Cell Biol. 2015 Apr;35(7):1182-96. doi: 10.1128/MCB.00550-14. Epub 2015 Jan 20.
Phosphoinositide 3-OH kinase (PI3K) regulates a number of developmental and physiologic processes in skeletal muscle; however, the contributions of individual PI3K p110 catalytic subunits to these processes are not well-defined. To address this question, we investigated the role of the 110-kDa PI3K catalytic subunit β (p110β) in myogenesis and metabolism. In C2C12 cells, pharmacological inhibition of p110β delayed differentiation. We next generated mice with conditional deletion of p110β in skeletal muscle (p110β muscle knockout [p110β-mKO] mice). While young p110β-mKO mice possessed a lower quadriceps mass and exhibited less strength than control littermates, no differences in muscle mass or strength were observed between genotypes in old mice. However, old p110β-mKO mice were less glucose tolerant than old control mice. Overexpression of p110β accelerated differentiation in C2C12 cells and primary human myoblasts through an Akt-dependent mechanism, while expression of kinase-inactive p110β had the opposite effect. p110β overexpression was unable to promote myoblast differentiation under conditions of p110α inhibition, but expression of p110α was able to promote differentiation under conditions of p110β inhibition. These findings reveal a role for p110β during myogenesis and demonstrate that long-term reduction of skeletal muscle p110β impairs whole-body glucose tolerance without affecting skeletal muscle size or strength in old mice.
磷酸肌醇3-羟基激酶(PI3K)调节骨骼肌中的许多发育和生理过程;然而,各个PI3K p110催化亚基对这些过程的贡献尚未明确界定。为了解决这个问题,我们研究了110-kDa PI3K催化亚基β(p110β)在肌肉生成和代谢中的作用。在C2C12细胞中,p110β的药理抑制作用延迟了分化。接下来,我们构建了骨骼肌中p110β条件性缺失的小鼠(p110β肌肉敲除[p110β-mKO]小鼠)。虽然年轻的p110β-mKO小鼠股四头肌质量较低,且比对照同窝小鼠表现出更小的力量,但在老年小鼠中未观察到基因型之间肌肉质量或力量的差异。然而,老年p110β-mKO小鼠的葡萄糖耐量低于老年对照小鼠。p110β的过表达通过Akt依赖性机制加速了C2C12细胞和原代人成肌细胞的分化,而激酶失活的p110β的表达则产生相反的效果。在p110α抑制的条件下,p110β的过表达无法促进成肌细胞分化,但在p110β抑制的条件下,p110α的表达能够促进分化。这些发现揭示了p110β在肌肉生成过程中的作用,并表明长期降低骨骼肌中的p110β会损害全身葡萄糖耐量,而不影响老年小鼠的骨骼肌大小或力量。