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Myoblasts rely on TAp63 to control basal mitochondria respiration

机译:成肌细胞依靠TAp63控制基底线粒体呼吸

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摘要

p53, with its family members p63 and p73, have been shown to promote myoblast differentiation by regulation of the function of the retinoblastoma protein and by direct activation of p21Cip/Waf1 and p57Kip2, promoting cell cycle exit. In previous studies, we have demonstrated that the TAp63γ isoform is the only member of the p53 family that accumulates during in vitro myoblasts differentiation, and that its silencing led to delay in myotube fusion. To better dissect the role of TAp63γ in myoblast physiology, we have generated both sh-p63 and Tet-On inducible TAp63γ clones. Gene array analysis of sh-p63 C2C7 clones showed a significant modulation of genes involved in proliferation and cellular metabolism. Indeed, we found that sh-p63 C2C7 myoblasts present a higher proliferation rate and that, conversely, TAp63γ ectopic expression decreases myoblasts proliferation, indicating that TAp63γ specifically contributes to myoblasts proliferation, independently of p53 and p73. In addition, sh-p63 cells have a defect in mitochondria respiration highlighted by a reduction in spare respiratory capacity and a decrease in complex I, IV protein levels. These results demonstrated that, beside contributing to cell cycle exit, TAp63γ participates to myoblasts metabolism control.
机译:已证明p53及其家族成员p63和p73可通过调节视网膜母细胞瘤蛋白的功能以及直接激活p21 Cip / Waf1 和p57 Kip2来促进成肌细胞分化 sup>,促进细胞周期退出。在以前的研究中,我们已经证明TAp63γ同工型是p53家族中在成肌细胞分化过程中积累的唯一成员,并且其沉默导致肌管融合延迟。为了更好地剖析TAp63γ在成肌细胞生理中的作用,我们生成了sh-p63和Tet-On诱导型TAp63γ克隆。 sh-p63 C2C7克隆的基因阵列分析显示,参与增殖和细胞代谢的基因有明显的调节作用。确实,我们发现sh-p63 C2C7成肌细胞呈现更高的增殖率,相反,TAp63γ异位表达降低了成肌细胞的增殖,表明TAp63γ独立于p53和p73促进成肌细胞的增殖。此外,sh-p63细胞在线粒体呼吸方面存在缺陷,突出表现为备用呼吸能力下降和复杂的I,IV蛋白水平下降。这些结果表明,TAp63γ除了有助于细胞周期退出外,还参与成肌细胞的代谢控制。

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