Publication | Closed Access
Activation of Integrin αIIbß3 by Modulation of Transmembrane Helix Associations
286
Citations
25
References
2003
Year
Cell AdhesionMolecular BiologyCytoskeletonCellular PhysiologyProtein FoldingCell SignalingProtein FunctionMolecular PhysiologyIntegrin ActivityProtein TransportCell BiologySignal TransductionNatural SciencesCell-matrix InteractionIntegrin AlphaIntracellular TraffickingCellular BiochemistryMedicineIntegrin αIibß3Integrin Activation
Transmembrane helices of integrin alpha and beta subunits have been implicated in the regulation of integrin activity. Two mutations, glycine-708 to asparagine-708 (G708N)and methionine-701 to asparagine-701, in the transmembrane helix of the beta3 subunit enabled integrin alphaIIbbeta3 to constitutively bind soluble fibrinogen. Further characterization of the G708N mutant revealed that it induced alphaIIbbeta3 clustering and constitutive phosphorylation of focal adhesion kinase. This mutation also enhanced the tendency of the transmembrane helix to form homotrimers. These results suggest that homomeric associations involving transmembrane domains provide a driving force for integrin activation. They also suggest a structural basis for the coincidence of integrin activation and clustering.
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