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Cell-cell communication through FGF4 generates and maintains robust proportions of differentiated cell types in embryonic stem cells

Dhruv Raina, Azra Bahadori, Angel Stanoev, Michelle Protzek, Aneta Koseska, Christian Schröter

2021Development41 citationsDOIOpen Access PDF

Abstract

During embryonic development and tissue homeostasis, reproducible proportions of differentiated cell types are specified from populations of multipotent precursor cells. Molecular mechanisms that enable both robust cell-type proportioning despite variable initial conditions in the precursor cells, and the re-establishment of these proportions upon perturbations in a developing tissue remain to be characterized. Here, we report that the differentiation of robust proportions of epiblast-like and primitive endoderm-like cells in mouse embryonic stem cell cultures emerges at the population level through cell-cell communication via a short-range fibroblast growth factor 4 (FGF4) signal. We characterize the molecular and dynamical properties of the communication mechanism and show how it controls both robust cell-type proportioning from a wide range of experimentally controlled initial conditions, as well as the autonomous re-establishment of these proportions following the isolation of one cell type. The generation and maintenance of reproducible proportions of discrete cell types is a new function for FGF signaling that might operate in a range of developing tissues.

Topics & Concepts

BiologyEpiblastEmbryonic stem cellCell biologyCell typeStem cellCellCellular differentiationFibroblast growth factorMultipotent Stem CellPrecursor cellGeneticsEmbryogenesisEmbryoGastrulationProgenitor cellReceptorGenePluripotent Stem Cells ResearchDevelopmental Biology and Gene RegulationCancer Cells and Metastasis
Cell-cell communication through FGF4 generates and maintains robust proportions of differentiated cell types in embryonic stem cells | Litcius