Department of Genetics, Harvard Medical School, Boston, MA, USA.
Department of Pathology, Brigham and Women's Hospital, Boston, MA, USA.
Nature. 2020 Aug;584(7819):98-101. doi: 10.1038/s41586-020-2428-0. Epub 2020 Jun 24.
Formation of the body of vertebrate embryos proceeds sequentially by posterior addition of tissues from the tail bud. Cells of the tail bud and the posterior presomitic mesoderm, which control posterior elongation, exhibit a high level of aerobic glycolysis that is reminiscent of the metabolic status of cancer cells experiencing the Warburg effect. Glycolytic activity downstream of fibroblast growth factor controls WNT signalling in the tail bud. In the neuromesodermal precursors of the tail bud, WNT signalling promotes the mesodermal fate that is required for sustained axial elongation, at the expense of the neural fate. How glycolysis regulates WNT signalling in the tail bud is currently unknown. Here we used chicken embryos and human tail bud-like cells differentiated in vitro from induced pluripotent stem cells to show that these cells exhibit an inverted pH gradient, with the extracellular pH lower than the intracellular pH, as observed in cancer cells. Our data suggest that glycolysis increases extrusion of lactate coupled to protons via the monocarboxylate symporters. This contributes to elevating the intracellular pH in these cells, which creates a favourable chemical environment for non-enzymatic β-catenin acetylation downstream of WNT signalling. As acetylated β-catenin promotes mesodermal rather than neural fate, this ultimately leads to activation of mesodermal transcriptional WNT targets and specification of the paraxial mesoderm in tail bud precursors. Our work supports the notion that some tumour cells reactivate a developmental metabolic programme.
脊椎动物胚胎体的形成是通过尾部芽基组织的后端添加顺序进行的。尾部芽基和控制后端伸长的后体节间中胚层的细胞表现出高水平的有氧糖酵解,这让人联想到经历沃伯格效应的癌细胞的代谢状态。成纤维细胞生长因子下游的糖酵解活性控制尾部芽基中的 WNT 信号。在尾部芽基的神经中胚层前体细胞中,WNT 信号促进中胚层命运,这是维持轴向伸长所必需的,以牺牲神经命运为代价。糖酵解如何调节尾部芽基中的 WNT 信号目前尚不清楚。在这里,我们使用鸡胚胎和体外从诱导多能干细胞分化而来的人尾部芽基样细胞表明,这些细胞表现出倒置的 pH 梯度,细胞外 pH 低于细胞内 pH,如癌细胞中观察到的那样。我们的数据表明,糖酵解增加了通过单羧酸转运蛋白与质子偶联的乳酸外排。这有助于增加这些细胞的细胞内 pH 值,为 WNT 信号下游非酶促 β-连环蛋白乙酰化创造有利的化学环境。由于乙酰化的 β-连环蛋白促进中胚层而不是神经命运,这最终导致中胚层转录 WNT 靶基因的激活和尾部芽基前体细胞中轴旁中胚层的特化。我们的工作支持了这样一种观点,即一些肿瘤细胞重新激活了一种发育代谢程序。