Publication | Open Access
Bves directly interacts with GEFT, and controls cell shape and movement through regulation of Rac1/Cdc42 activity
61
Citations
51
References
2008
Year
Systems BiologySignal TransductionSignaling PathwayCell RegulationRho-family GtpasesNatural SciencesCell InteractionMolecular BiologyRac1/cdc42 ActivityPopdc FamilyCytoskeletonRho-family GtpaseProtein TransportGene ExpressionMedicineCell BiologyCell SignalingCellular Physiology
Bves is an integral membrane protein with no determined function and no homology to proteins outside of the Popdc family. It is widely expressed throughout development in myriad organisms. Here, we demonstrate an interaction between Bves and guanine nucleotide exchange factor T (GEFT), a GEF for Rho-family GTPases. This interaction represents the first identification of any protein that has a direct physical interaction with any member of the Popdc family. Bves and GEFT are shown to colocalize in adult skeletal muscle. We also demonstrate that exogenous expression of Bves reduces Rac1 and Cdc42 activity levels while not affecting levels of active RhoA. Consistent with a repression of Rac1 and Cdc42 activity, we show changes in speed of cell locomotion and cell roundness also result from exogenous expression of Bves. Modulation of Rho-family GTPase signaling by Bves would be highly consistent with previously described phenotypes occurring upon disruption of Bves function in a wide variety of model systems. Therefore, we propose Bves as a novel regulator of the Rac1 and Cdc42 signaling cascades.
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Activation of Rac and Cdc42 Video Imaged by Fluorescent Resonance Energy Transfer-Based Single-Molecule Probes in the Membrane of Living Cells Reina E. Itoh, Kazuo Kurokawa, Yusuke Ohba, Molecular and Cellular Biology Molecular BiologyCytoskeletonCellular PhysiologySingle Molecule BiophysicsSingle Molecule | 2002 | 574 |
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