Mechanochemical feedback underlies coexistence of qualitatively distinct cell polarity patterns within diverse cell populations

Authors
Park, JinSeokHolmes, William R.Lee, Sung HoonKim, Hong-NamKim, Deok-HoKwak, Moon KyuWang, Chiaochun JoanneEdelstein-Keshet, LeahLevchenko, Andre
Issue Date
2017-07-11
Publisher
NATL ACAD SCIENCES
Citation
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, v.114, no.28, pp.E5750 - E5759
Abstract
Cell polarization and directional cell migration can display random, persistent, and oscillatory dynamic patterns. However, it is not clear whether these polarity patterns can be explained by the same underlying regulatory mechanism. Here, we show that random, persistent, and oscillatory migration accompanied by polarization can simultaneously occur in populations of melanoma cells derived from tumors with different degrees of aggressiveness. We demonstrate that all of these patterns and the probabilities of their occurrence are quantitatively accounted for by a simple mechanism involving a spatially distributed, mechanochemical feedback coupling the dynamically changing extracellular matrix (ECM)-cell contacts to the activation of signaling downstream of the Rho-family small GTPases. This mechanism is supported by a predictive mathematical model and extensive experimental validation, and can explain previously reported results for diverse cell types. In melanoma, this mechanism also accounts for the effects of genetic and environmental perturbations, including mutations linked to invasive cell spread. The resulting mechanistic understanding of cell polarity quantitatively captures the relationship between population variability and phenotypic plasticity, with the potential to account for a wide variety of cell migration states in diverse pathological and physiological conditions.
Keywords
EXTRACELLULAR-MATRIX; INTEGRIN ALPHA-V-BETA-3; SIGNALING PATHWAYS; MEMBRANE TENSION; CANCER-CELLS; RHO-GTPASES; MIGRATION; ADHESION; INVASION; MELANOMA; EXTRACELLULAR-MATRIX; INTEGRIN ALPHA-V-BETA-3; SIGNALING PATHWAYS; MEMBRANE TENSION; CANCER-CELLS; RHO-GTPASES; MIGRATION; ADHESION; INVASION; MELANOMA; cell polarization; cell migration; mechanochemical feedback; Rho-family small GTPases; extracellular matrix
ISSN
0027-8424
URI
https://pubs.kist.re.kr/handle/201004/122528
DOI
10.1073/pnas.1700054114
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KIST Article > 2017
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