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Updated: Sep 25, 2026

A Functional Assay for Gap Junctional Examination; Electroporation of Adherent Cells on Indium-Tin Oxide
Published on: October 18, 2014
Tyrosine phosphorylation of the scaffold protein IQGAP1 by VEGFR2 modulates cell proliferation
Mohammed Rizwan Babu Sait1, Zhigang Li1, Louise Thines1
1Department of Laboratory Medicine, National Institutes of Health, Bethesda, Maryland 20892, USA.
Abstract:
IQGAP1 (IQ motif-containing GTPase activating protein 1), a scaffold protein with >250 interacting partners, regulates several intracellular signaling cascades, thereby modulating cell functions. Post-translational modifications of IQGAP1 by ubiquitination or phosphorylation have been shown to alter its interactions with selected proteins. We previously demonstrated that phosphorylation of Tyr-1510 of IQGAP1 by the MET receptor tyrosine kinase creates a docking site for Src homology 2 (SH2) domains of Abl. The vascular endothelial growth factor receptor 2 (VEGFR2) orchestrates angiogenesis by promoting endothelial cell survival, proliferation, and migration. Here, we show that the VEGFR2 kinase stimulates tyrosine phosphorylation of IQGAP1 in vitro and in cells; the latter is independent of SRC. Analysis by LC-MS/MS identifies Tyr-855 as the predominant site of IQGAP1 phosphorylation. Using a microarray screen, we identify that the SH2 domains of 7 proteins bind to a peptide containing Tyr-855 of IQGAP1 in a phosphorylation-dependent manner. To assess the functional effects of Tyr-855 phosphorylation, we replaced Tyr-855 of IQGAP1 with alanine (IQGAP1 Y855A). The ability of VEGF to activate Akt and ERK and increase cell proliferation is abrogated when IQGAP1-null cells are reconstituted with IQGAP1 Y855A, indicating that phosphorylation of Tyr-855 of IQGAP1 modulates the ability of VEGF to activate at least some signaling pathways and promote cell proliferation. Taken together, our data suggest that IQGAP1 phosphorylation is a potential therapeutic target for neoplasms and other disorders characterized by increased VEGFR2 signaling.
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