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EphA2 Receptor Unliganded Dimers Suppress EphA2 Pro-tumorigenic Signaling
Authors:Deo R Singh  Fozia Ahmed  Christopher King  Nisha Gupta  Matt Salotto  Elena B Pasquale  Kalina Hristova
Institution:From the Department of Materials Science and Engineering and ;§Program in Molecular Biophysics, The Johns Hopkins University, Baltimore, Maryland 21218 and ;the Sanford Burnham Prebys Medical Discovery Institute, La Jolla, San Diego, California 92037
Abstract:The EphA2 receptor tyrosine kinase promotes cell migration and cancer malignancy through a ligand- and kinase-independent distinctive mechanism that has been linked to high Ser-897 phosphorylation and low tyrosine phosphorylation. Here, we demonstrate that EphA2 forms dimers in the plasma membrane of HEK293T cells in the absence of ephrin ligand binding, suggesting that the current seeding mechanism model of EphA2 activation is incomplete. We also characterize a dimerization-deficient EphA2 mutant that shows enhanced ability to promote cell migration, concomitant with increased Ser-897 phosphorylation and decreased tyrosine phosphorylation compared with EphA2 wild type. Our data reveal a correlation between unliganded dimerization and tumorigenic signaling and suggest that EphA2 pro-tumorigenic activity is mediated by the EphA2 monomer. Thus, a therapeutic strategy that aims at the stabilization of EphA2 dimers may be beneficial for the treatment of cancers linked to EphA2 overexpression.
Keywords:dimerization  membrane protein  receptor tyrosine kinase  signal transduction  thermodynamics
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