A single-cell resolved cell-cell communication model explains lineage commitment in hematopoiesis.

Autor: Rommelfanger, Megan K., MacLean, Adam L.
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Zdroj: Development (09501991); 12/15/2021, Vol. 148 Issue 24, p1-12, 12p
Abstrakt: Cells do not make fate decisions independently. Arguably, every cellfate decision occurs in response to environmental signals. In many cases, cell-cell communication alters the dynamics of the internal gene regulatory network of a cell to initiate cell-fate transitions, yet models rarely take this into account. Here, we have developed a multiscale perspective to study the granulocyte-monocyte versus megakaryocyte-erythrocyte fate decisions. This transition is dictated by the GATA1-PU.1 network: a classical example of a bistable cell-fate system. We show that, for a wide range of cell communication topologies, even subtle changes in signaling can have pronounced effects on cell-fate decisions. We go on to show how cell-cell coupling through signaling can spontaneously break the symmetry of a homogenous cell population. Noise, both intrinsic and extrinsic, shapes the decision landscape profoundly, and affects the transcriptional dynamics underlying this important hematopoietic cellfate decision-making system. [ABSTRACT FROM AUTHOR]
Databáze: Complementary Index