Rap1 Can Bypass the FAK-Src-Paxillin Cascade to Induce Cell Spreading and Focal Adhesion Formation
pmid: 23209645
pmc: PMC3507925
Rap1 Can Bypass the FAK-Src-Paxillin Cascade to Induce Cell Spreading and Focal Adhesion Formation
We developed new image analysis tools to analyse quantitatively the extracellular-matrix-dependent cell spreading process imaged by live-cell epifluorescence microscopy. Using these tools, we investigated cell spreading induced by activation of the small GTPase, Rap1. After replating and initial adhesion, unstimulated cells exhibited extensive protrusion and retraction as their spread area increased, and displayed an angular shape that was remodelled over time. In contrast, activation of endogenous Rap1, via 007-mediated stimulation of Epac1, induced protrusion along the entire cell periphery, resulting in a rounder spread surface, an accelerated spreading rate and an increased spread area compared to control cells. Whereas basal, anisotropic, spreading was completely dependent on Src activity, Rap1-induced spreading was refractory to Src inhibition. Under Src inhibited conditions, the characteristic Src-induced tyrosine phosphorylations of FAK and paxillin did not occur, but Rap1 could induce the formation of actomyosin-connected adhesions, which contained vinculin at levels comparable to that found in unperturbed focal adhesions. From these results, we conclude that Rap1 can induce cell adhesion and stimulate an accelerated rate of cell spreading through mechanisms that bypass the canonical FAK-Src-Paxillin signalling cascade.
- Royal Netherlands Academy of Arts and Sciences (KNAW) Netherlands
- University Medical Center Utrecht Netherlands
- Hubrecht Institute for Developmental Biology and Stem Cell Research Netherlands
- Utrecht University Netherlands
- Royal Netherlands Academy of Arts and Sciences Netherlands
Science, Telomere-Binding Proteins, Gene Expression Regulation, Enzymologic, Shelterin Complex, Cell Line, Tumor, Cell Adhesion, Cyclic AMP, Guanine Nucleotide Exchange Factors, Humans, RNA, Small Interfering, Q, R, Actomyosin, Vinculin, Extracellular Matrix, src-Family Kinases, Microscopy, Fluorescence, Focal Adhesion Protein-Tyrosine Kinases, Medicine, Anisotropy, Guanosine Triphosphate, Paxillin, Research Article, Signal Transduction
Science, Telomere-Binding Proteins, Gene Expression Regulation, Enzymologic, Shelterin Complex, Cell Line, Tumor, Cell Adhesion, Cyclic AMP, Guanine Nucleotide Exchange Factors, Humans, RNA, Small Interfering, Q, R, Actomyosin, Vinculin, Extracellular Matrix, src-Family Kinases, Microscopy, Fluorescence, Focal Adhesion Protein-Tyrosine Kinases, Medicine, Anisotropy, Guanosine Triphosphate, Paxillin, Research Article, Signal Transduction
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