A lateral signalling pathway coordinates shape volatility during cell migration
Citations Over TimeTop 10% of 2016 papers
Abstract
Abstract Cell migration is fundamental for both physiological and pathological processes. Migrating cells usually display high dynamics in morphology, which is orchestrated by an integrative array of signalling pathways. Here we identify a novel pathway, we term lateral signalling, comprised of the planar cell polarity (PCP) protein Pk1 and the RhoGAPs, Arhgap21/23. We show that the Pk1–Arhgap21/23 complex inhibits RhoA, is localized on the non-protrusive lateral membrane cortex and its disruption leads to the disorganization of the actomyosin network and altered focal adhesion dynamics. Pk1-mediated lateral signalling confines protrusive activity and is regulated by Smurf2, an E3 ubiquitin ligase in the PCP pathway. Furthermore, we demonstrate that dynamic interplay between lateral and protrusive signalling generates cyclical fluctuations in cell shape that we quantify here as shape volatility, which strongly correlates with migration speed. These studies uncover a previously unrecognized lateral signalling pathway that coordinates shape volatility during productive cell migration.
Related Papers
- → EFFECT OF THE NEMATODE PHASMARHABDITIS HERMAPHRODITA ON YOUNGSTAGES OF THE PEST SLUG ARION LUSITANICUS(2002)40 cited
- → Cloning and Characterization of Rat BAT3 cDNA(1999)20 cited
- → Anthoxanthum Mosaic Virus(1970)6 cited
- → HLA-B-associated transcript 3 (Bat3)/Scythe is essential for p300-mediated acetylation of p53(2007)127 cited
- → Ecological and evolutionary importance of neighbors in the grass Anthoxanthum odoratum(1990)20 cited