| Literature DB >> 20159552 |
Weiwen Long1, Ping Yi, Larbi Amazit, Heather L LaMarca, Felicity Ashcroft, Rakesh Kumar, Michael A Mancini, Sophia Y Tsai, Ming-Jer Tsai, Bert W O'Malley.
Abstract
EGF induces signal transduction between EGFR and FAK, and FAK is required for EGF-induced cell migration. It is unknown, however, what factor mediates the interaction between EGFR and FAK and leads to EGF-induced FAK phosphorylation. Here, we identify SRC-3Delta4, a splicing isoform of the SRC-3 oncogene, as a signaling adaptor that links EGFR and FAK and promotes EGF-induced phosphorylations of FAK and c-Src. We identify three PAK1-mediated phosphorylations in SRC-3Delta4 that promote the localization of SRC-3Delta4 to the plasma membrane and mediate the interactions with EGFR and FAK. Importantly, overexpression of SRC-3Delta4 promotes MDA-MB231-induced breast tumor metastasis. Our findings identify phosphorylated SRC-3Delta4 as a missing adaptor between EGFR and its downstream signaling molecule FAK to coordinately regulate EGF-induced cell migration. Our study also reveals that a nuclear receptor coactivator can act in the periphery of a cell to directly mediate activation of an enzyme.Entities:
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Year: 2010 PMID: 20159552 PMCID: PMC2824333 DOI: 10.1016/j.molcel.2010.01.004
Source DB: PubMed Journal: Mol Cell ISSN: 1097-2765 Impact factor: 17.970