Boolean modeling of mechanosensitive Epithelial to Mesenchymal Transition and its reversal

Author:

Sullivan Emmalee,Harris Marlayna,Bhatnagar Arnav,Guberman Eric,Zonfa Ian,Ravasz Regan ErzsébetORCID

Abstract

SUMMARYThe significance of biophysical modulators of the Epithelial to Mesenchymal Transition (EMT) is demonstrated by experiments that document full EMT on stiff, nano-patterned substrates in the absence of biochemical induction. Yet, current models focus on biochemical triggers of EMT without addressing its mechanosensitive nature. Here we built a Boolean model of EMT triggered by mechanosensing – mitogen crosstalk. Our model reproduces epithelial, hybrid E/M and mesenchymal phenotypes, the role of autocrineTGFβsignaling in maintaining mesenchymal cells in the absence of external drivers, inhibition of proliferation byTGFβ, and its apoptotic effects on soft ECM. We offer testable predictions on the density-dependence of partial EMT, its molecular drivers, and the conflict between mitosis and hybrid E/M stability. Our model opens the door to modeling the effects of the biomechanical environment on cancer cell stemness linked to the hybrid E/M state, as well as the mutually inhibitory crosstalk between EMT and senescence.

Publisher

Cold Spring Harbor Laboratory

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