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Publication : Nadrin, a novel neuron-specific GTPase-activating protein involved in regulated exocytosis.

First Author  Harada A Year  2000
Journal  J Biol Chem Volume  275
Issue  47 Pages  36885-91
PubMed ID  10967100 Mgi Jnum  J:80143
Mgi Id  MGI:2429858 Doi  10.1074/jbc.M004069200
Citation  Harada A, et al. (2000) Nadrin, a novel neuron-specific GTPase-activating protein involved in regulated exocytosis. J Biol Chem 275(47):36885-91
abstractText  It has been proposed that the cortical actin filament networks act as a cortical barrier that must be reorganized to enable docking and fusion of the synaptic vesicles with the plasma membranes. We identified a novel neuron-associated developmentally regulated protein, designated as Nadrin. Expression of Nadrin is restricted to neurons and correlates well with the differentiation of neurons. Nadrin has a unique structure; it contains a GTPase-activating protein (GAP) domain for Rho family GTPases, a potential coiled-coil domain, and a succession of 29 glutamines. In vitro the GAP domain activates RhoA, Rac1, and Cdc42 GTPases. Expression of Nadrin in NIH3T3 cells markedly reduced the number of the actin stress fibers and the formation of the ruffled membranes, suggesting that Nadrin regulates actin filament reorganization. In PC12 cells, Nadrin colocalized with synaptotagmin in the neurite termini and also with cortical actin filaments in the subplasmalemmal regions. Expression of Nadrin or its mutant composed of the coiled-coil and GAP domain enhanced Ca(2+)-dependent exocytosis of PC12 cells, but a mutant lacking the GAP domain inhibited exocytosis. These results suggest that Nadrin plays a role in regulating Ca(2+)-dependent exocytosis, most likely by catalyzing GTPase activity of Rho family proteins and by inducing the reorganization of the cortical actin filaments.
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