| Literature DB >> 9502075 |
Abstract
Balb/c 3T3 cell adhesion on substrata coated with fibronectin's (FN) alternatively-spliced EDb, implicated in some tumor cell systems, and its neighboring type III repeats (III7 and III8) induced intracellular signaling coincident with morphological responses. These events were analysed using minigene-expressed proteins containing various permutations of type III repeats of FN. Cells adherent to the tri-repeat protein 7-EDb-8 were compared to those attached to the tri-repeat 8-9-10 which can interact with integrins through RGD and its synergistic sequences. Cell adhesion to 7-EDb-8 generated rapid tyrosine phosphorylation of several intracellular proteins (particularly the complex at 120-130 kD), with the overall phosphorylation level and its sensitivity to tyrosine kinase inhibitors similar to responses on the 8-9-10 tri-repeat. This similarity contrasted with the differential morphological responses of cells mediated by these proteins. Further analysis of the kinetics of phosphorylation through immunoblotting of two focal adhesion proteins, p125FAK and pl30cas, revealed a profile for Balb/c 3T3 adhesion to 7-EDb-8 distinct from that on 8-9-10. EDb mono-repeat was also more potent for inducing both limited cell spreading and FAK tyrosine phosphorylation than its neighboring repeats III7 or III8. Examination of cellular localization of FAK and vinculin showed that cells spread on the 7-EDb-8 substratum displayed vinculin-positive focal complex-like structures at the cell periphery, in contrast to the classical focal adhesions seen in 8-9-10-adherent cells. These results suggest that EDb induces cell signaling events, leading to tyrosine phosphorylation of focal adhesion proteins, through a mechanism different from that mediated by integrins recognizing sequences in III8-9-10. EDb-dependent signaling may have special significance in some tumor systems.Entities:
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Year: 1998 PMID: 9502075 DOI: 10.1023/a:1006507917700
Source DB: PubMed Journal: Clin Exp Metastasis ISSN: 0262-0898 Impact factor: 5.150