Original Papers- FUKUDA Mitsunori -
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[2006]
181.Rab3A and Rab27A cooperatively regulate the docking step of dense-core vesicle exocytosis in PC12 cells..[J. Cell Sci.,119(11),(2006),2196-2203]Tsuboi, T. and Fukuda, M.
182.Rab27a regulates epithelial sodium channel (ENaC) activity through synaptotagmin-like protein (SLP-5) and Munc13-4 effector mechanism..[Biochem. Biophys. Res. Commun.,344(2),(2006),651-657]Saxena, S. K., Horiuchi, H. and Fukuda, M.
183.The Slp4-a linker domain controls exocytosis through interaction with Munc18-1·syntaxin-1a complex..[Mol. Biol. Cell,17(5),(2006),2101-2112]Tsuboi, T. and Fukuda, M.
http://hdl.handle.net/10097/47920
184.Distinct Rab27A binding affinities of Slp2-a and Slac2-a/melanophilin: Hierarchy of Rab27A effectors..[Biochem. Biophys. Res. Commun.,343(2),(2006),666-674]Fukuda, M.
185.Distinct developmental expression of synaptotagmin I and IX in the mouse brain..[NeuroReport,17(2),(2006),179-182]Fukuda, M.
186.Cloning and genomic characterization of sytdep, a new synaptotagmin XIV-related gene..[Biochem. Biophys. Res. Commun.,340(2),(2006),386-394]Herrero-Turrión, M. J., Fukuda, M. and Mollinedo, F.
[2005]
187.Rab proteins regulate epithelial sodium channel activity in colonic epithelial HT-29 cells..[Biochem. Biophys. Res. Commun.,337,(2005),1219-1223]Saxena, S., Singh, M., Engisch, K., Fukuda, M. and Kaur, S.
188.The short apical membrane half-life of rescued ΔF508-cystic fibrosis transmembrane conductance regulator (CFTR) results from accelerated endocytosis of ΔF508-CFTR in polarized human airway epithelial cells..[J. Biol. Chem.,280,(2005),36762-36772]Swiatecka-Urban, A., Brown, A., Moreau-Marquis, S., Renuka, J., Coutermarsh, B., Barnaby, R., Karlson, K. H., Flotte, T. R., Fukuda, M., Langford, G. M. and Stanton, B. A.
189.The C2B domain of rabphilin directly interacts with SNAP-25 and regulates the docking step of dense core vesicle exocytosis in PC12 cells..[J. Biol. Chem.,280,(2005),39253-39259]Tsuboi, T. and Fukuda, M.
190.Slp4-a/granuphilin-a interacts with syntaxin-2/3 in a Munc18-2-dependent manner..[J. Biol. Chem.,280,(2005),39175-39184]Fukuda, M., Imai, A., Nashida, T. and Shimomura, H.
191.AS160, the Akt substrate regulating GLUT4 translocation, has a functional Rab GTPase activating protein domain..[Biochem. J.,391,(2005),87-93]Miinea, C. P., Sano, H., Kane, S., Sano, E., Fukuda, M., Peranen, J., Lane, W. S. and Lienhard, G. E.
192.Protein Kinase C-mediated phosphorylation of the two polybasic regions of synaptotagmin VI regulates their function in acrosomal exocytosis..[Dev. Biol.,285,(2005),422-435]Roggero, C. M., Tomes, C. N., De Blas, G. A., Castillo, J., Michaut, M. A., Fukuda, M. and Mayorga, L. S.
193.Adenovirus-mediated silencing of Synaptotagmin 9 inhibits Ca2+-dependent insulin secretion in islets..[FEBS Lett.,579,(2005),5241-5246]Iezzi, M., Eliasson, L., Fukuda, M. and Wollheim, C. B.
194.Functional analysis of Slac2-c/MyRIP as a linker protein between melanosomes and myosin VIIa..[J. Biol. Chem.,280,(2005),28015-28022]Kuroda, T. S. and Fukuda, M.
195.Synaptotagmin V and IX isoforms control Ca2+-dependent insulin exocytosis..[J. Cell Sci.,117,(2005),3119-3127]Iezzi, M., Kouri, G., Fukuda, M. and Wollheim, C. B.
196.RNA interference-mediated silencing of synaptotagmin IX, but not synaptotagmin I, inhibits dense-core vesicle exocytosis in PC12 cells..[Biochem. J.,380,(2005),875-879]Fukuda, M.
197.Slac2-a/melanophilin contains multiple PEST-like sequences that are highly sensitive to proteolysis..[J. Biol. Chem.,279,(2005),22314-22321]Fukuda, M. and Itoh, T.
198.O-glycosylation is essential for intracellular targeting of synaptotagmins I and II in non-neuronal specialized secretory cells..[J. Cell Sci.,118,(2005),1363-1372]Atiya-Nasagi, Y., Cohen, H., Medalia, O., Fukuda, M. and Sagi-Eisenberg, R
199.The small GTPase Rab27B regulates amylase release from rat parotid acinar cells..[J. Cell Sci.,117,(2005),1945-1953]Imai, A., Yoshie, S., Nashida, T., Shimomura, H. and Fukuda, M.
200.Classical protein kinase C(s) regulates targeting of synaptotagmin IX to the endocytic recycling compartment..[J. Cell Sci.,118,(2005),1641-1649]Haberman, Y., Ziv, I., Gorzalczany, Y., Fukuda, M. and Sagi-Eisenberg, R.
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