1] Université Paris Sud, Batiment 110, F-91 405 Orsay cedex, France [2] Institut Curie, Centre Universitaire, Batiment 110, F-91 405 Orsay cedex, France [3] CNRS UMR3347, Centre Universitaire, Batiment 110, F-91 405 Orsay cedex, France [4] INSERM U1021, Centre Universitaire, Batiment 110, F-91 405 Orsay cedex, France.
Nat Commun. 2015 Jan 20;6:5953. doi: 10.1038/ncomms6953.
How metabolism regulators play roles during early development remains elusive. Here we show that PFKFB4 (6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase 4), a glycolysis regulator, is critical for controlling dorsal ectoderm global patterning in gastrulating frog embryos via a non-glycolytic function. PFKFB4 is required for dorsal ectoderm progenitors to proceed towards more specified fates including neural and non-neural ectoderm, neural crest or placodes. This function is mediated by Akt signalling, a major pathway that integrates cell homeostasis and survival parameters. Restoring Akt signalling rescues the loss of PFKFB4 in vivo. In contrast, glycolysis is not essential for frog development at this stage. Our study reveals the existence of a PFKFB4-Akt checkpoint that links cell homeostasis to the ability of progenitor cells to undergo differentiation, and uncovers glycolysis-independent functions of PFKFB4.
代谢调节剂在早期发育过程中是如何发挥作用的仍然难以捉摸。在这里,我们表明,糖酵解调节剂 PFKFB4(6-磷酸果糖-2-激酶/果糖-2,6-二磷酸酶 4)通过非糖酵解功能对于控制原肠胚期青蛙胚胎背外胚层的全局模式至关重要。PFKFB4 对于背外胚层祖细胞向更特定的命运(包括神经外胚层和非神经外胚层、神经嵴或基板)前进是必需的。这个功能是由 Akt 信号通路介导的,Akt 信号通路是一个整合细胞内稳态和生存参数的主要途径。恢复 Akt 信号通路可以挽救体内 PFKFB4 的缺失。相比之下,在这个阶段糖酵解对青蛙的发育并不是必需的。我们的研究揭示了存在 PFKFB4-Akt 检查点,它将细胞内稳态与祖细胞进行分化的能力联系起来,并揭示了 PFKFB4 的非糖酵解功能。