bioRxiv · 10.1101/2021.01.12.426368
-actinin-4 drives invasiveness by regulating myosin IIB expression and myosin IIA localization
Abstract
The mechanisms by which the mechanoresponsive actin crosslinking protein -actinin-4 (ACTN4) regulates cell motility and invasiveness remains incompletely understood. Here we show that in addition to regulating protrusion dynamics and focal adhesion formation, ACTN4 transcriptionally regulates expression of non-muscle myosin IIB (NMM IIB), which is essential for mediating nuclear translocation during 3D invasion. We further demonstrate association between NMM IIA and ACTN4 at the cell front ensures retention of NMM IIA at the cell periphery. A protrusion-dependent model of confined migration recapitulating experimental observations predicts a dependence of protrusion forces on the degree of confinement and on the ratio of nucleus to matrix stiffness. Together, our results suggest that ACTN4 is a master regulator of cancer invasion that regulates invasiveness by controlling NMM IIB expression and NMM IIA localization.
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Barai, A., Mukherjee, A., Das, A., Saxena, N., Sen, S.. 2021-01-12. -actinin-4 drives invasiveness by regulating myosin IIB expression and myosin IIA localization. https://doi.org/10.1101/2021.01.12.426368
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