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A bioenergetic shift is required for spermatogonial differentiation

机译:精术差异需要生物能量转移

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A bioenergetic balance between glycolysis and mitochondrial respiration is particularly important for stem cell fate specification. It however remains to be determined whether undifferentiated spermatogonia switch their preference for bioenergy production during differentiation. In this study, we found that ATP generation in spermatogonia was gradually increased upon retinoic acid (RA)-induced differentiation. To accommodate this elevated energy demand, RA signaling concomitantly switched ATP production in spermatogonia from glycolysis to mitochondrial respiration, accompanied by increased levels of reactive oxygen species. Disrupting mitochondrial respiration significantly blocked spermatogonial differentiation. Inhibition of glucose conversion to glucose-6-phosphate or pentose phosphate pathway also repressed the formation of c-Kit+ differentiating germ cells, suggesting that metabolites produced from glycolysis are required for spermatogonial differentiation. We further demonstrated that the expression levels of several metabolic regulators and enzymes were significantly altered upon RA-induced differentiation, with both RNA-seq and quantitative proteomic analyses. Taken together, our data unveil a critically regulated bioenergetic balance between glycolysis and mitochondrial respiration that is required for spermatogonial proliferation and differentiation.
机译:糖酵解和线粒体呼吸之间的生物能量平衡对于干细胞命运规范尤为重要。然而,它仍有待确定未分化的精子酰胺在分化期间切换生物能源的优先性。在这项研究中,我们发现在视黄酸(RA)诱导的分化时逐渐增加了精子酰基的ATP生成。为了适应这种升高的能源需求,RA信号传导伴随着从糖酵解中切换了Spermatogonia的ATP产量,伴有线粒体呼吸,伴随着活性氧的增加。破坏线粒体呼吸显着阻断了精术分化。抑制葡萄糖转化对葡萄糖-6-磷酸盐或戊糖磷酸盐途径的抑制还抑制了C-kit +差异生殖细胞的形成,表明从糖酵解中产生的代谢物是对精酰胺分化所必需的。我们进一步证明,在RA诱导的分化,具有RNA-SEQ和定量蛋白质组学分析,显着改变了几种代谢调节剂和酶的表达水平。在一起,我们的数据在糖酵解和线粒体增殖所需的糖酵解和线粒体呼吸之间揭示了批判性的生物能量平衡。

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