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Role of Rac GTPase activating proteins in regulation of NADPH oxidase in human neutrophils
Affiliation:1. Division of Cardiovascular and Rare Disease, Center for Biomedical Sciences, Korea National Research Institute of Health, Cheongju, Republic of Korea;2. Juju National Quarantine Station, Centers for Disease Control & Prevention, Jeju, Republic of Korea;1. Center for Integrated Protein Science, Department Chemie, Technische Universität München, Lichtenbergstrasse 4, 85748 Garching, Germany;2. Department of Informatics, Ludwig-Maximilians-Universität München, Amalienstr. 17, 80333 München, Germany;3. Physics Department, Technische Universität München, James-Franck-Strasse 1, 85747 Garching, Germany
Abstract:Precise spatiotemporal regulation of O2radical dot-generating NADPH oxidases (Nox) is a vital requirement. In the case of Nox1–3, which depend on the small GTPase Rac, acceleration of GTP hydrolysis by GTPase activating protein (GAP) could represent a feasible temporal control mechanism. Our goal was to investigate the molecular interactions between RacGAPs and phagocytic Nox2 in neutrophilic granulocytes. In structural studies we revealed that simultaneous interaction of Rac with its effector protein p67phox and regulatory protein RacGAP was sterically possible. The effect of RacGAPs was experimentally investigated in a cell-free O2radical dot-generating system consisting of isolated membranes and recombinant p47phox and p67phox proteins. Addition of soluble RacGAPs decreased O2radical dot production and there was no difference in the effect of four RacGAPs previously identified in neutrophils. Depletion of membrane-associated RacGAPs had a selective effect: a decrease in ARHGAP1 or ARHGAP25 level increased O2radical dot production but a depletion of ARHGAP35 had no effect. Only membrane-localized RacGAPs seem to be able to interact with Rac when it is assembled in the Nox2 complex. Thus, in neutrophils multiple RacGAPs are involved in the control of O2radical dot production by Nox2, allowing selective regulation via different signaling pathways.
Keywords:NADPH oxidase  Superoxide production  GTPase activating protein (GAP)  Molecular modeling  Rac small GTPase
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