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Cell Fates As High-dimensional Attractor States of a Complex Gene Regulatory Network

Overview
Journal Phys Rev Lett
Specialty Biophysics
Date 2005 May 21
PMID 15903968
Citations 290
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Abstract

Cells in multicellular organisms switch between distinct cell fates, such as proliferation or differentiation into specialized cell types. Genome-wide gene regulatory networks govern this behavior. Theoretical studies of complex networks suggest that they can exhibit ordered (stable) dynamics, raising the possibility that cell fates may represent high-dimensional attractor states. We used gene expression profiling to show that trajectories of neutrophil differentiation converge to a common state from different directions of a 2773-dimensional gene expression state space, providing the first experimental evidence for a high-dimensional stable attractor that represents a distinct cellular phenotype.

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