Max Planck Institute of Molecular Physiology, Department of Systemic Cell Biology, 44227 Dortmund, Germany.
Biol Open. 2023 Aug 15;12(8). doi: 10.1242/bio.059941. Epub 2023 Aug 17.
The mesodermal precursor populations for different internal organ systems are specified during gastrulation by the combined activity of extracellular signaling systems such as BMP, Wnt, Nodal and FGF. The BMP, Wnt and Nodal signaling requirements for the differentiation of specific mesoderm subtypes in mammals have been mapped in detail, but how FGF shapes mesodermal cell type diversity is not precisely known. It is also not clear how FGF signaling integrates with the activity of other signaling systems involved in mesoderm differentiation. Here, we address these questions by analyzing the effects of targeted signaling manipulations in differentiating stem cell populations at single-cell resolution. We identify opposing functions of BMP and FGF, and map FGF-dependent and -independent mesodermal lineages. Stimulation with exogenous FGF boosts the expression of endogenous Fgf genes while repressing Bmp ligand genes. This positive autoregulation of FGF signaling, coupled with the repression of BMP signaling, may contribute to the specification of reproducible and coherent cohorts of cells with the same identity via a community effect, both in the embryo and in synthetic embryo-like systems.
中胚层前体细胞群体在原肠胚形成过程中由细胞外信号系统(如 BMP、Wnt、Nodal 和 FGF)的联合活性来指定。在哺乳动物中,特定中胚层亚型分化的 BMP、Wnt 和 Nodal 信号要求已经被详细绘制出来,但 FGF 如何塑造中胚层细胞类型多样性尚不清楚。也不清楚 FGF 信号如何与其他参与中胚层分化的信号系统的活性整合。在这里,我们通过在单细胞分辨率下分析分化干细胞群体中靶向信号处理的影响来解决这些问题。我们确定了 BMP 和 FGF 的相反功能,并绘制了 FGF 依赖和独立的中胚层谱系。外源性 FGF 的刺激会促进内源性 Fgf 基因的表达,同时抑制 Bmp 配体基因的表达。FGF 信号的这种正反馈调节,加上 BMP 信号的抑制,可能有助于通过群体效应在胚胎和合成胚胎样系统中指定具有相同特征的可重复和一致的细胞群体。