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Asfari, M., Janjic, D., Meda, P., Li, G., Halban, P. A. and Wollheim, C. B (1992). Establishment of 2-mercaptoethanol-dependent differentiated insulin-secreting cell lines. Endocrinology 130, 167-178.[Abstract/Free Full Text]

Baldini, G., Hohl, T., Lin, H. Y. and Lodish, H. F (1992). Cloning of a Rab3 isotype predominantly expressed in adipocytes. Proc. Nat. Acad. Sci. USA 89, 5049-5052.[Abstract/Free Full Text]

Baldini, G., Scherer, P. E. and Lodish, H. F (1995). Nonneuronal expression of Rab3A: Induction during adipogenesis and association with different intracellular membranes than Rab3D. Proc. Nat. Acad. Sci. USA 92, 4284-4288.[Abstract/Free Full Text]

Bourne, H. R (1988). Do GTPases direct membrane traffic in secretion?. Cell 53, 669-671.[Medline]

Bucci, C., Parton, R. G., Mather, I. H., Stunnenberg, H., Simons, K., Hoflack, B. and Zerial, M (1992). The small GTPase rab5 functions as a regulatory factor in the early endocytic pathway. Cell 70, 715-728.[Medline]

Chomczynski, P. and Sacchi, N (1987). Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction. Anal. Biochem 162, 156-159.[Medline]

Chung, S.-H., Takai, Y. and Holz, R. W (1995). Evidence that the Rab3a-binding protein, Rabphilin3a, enhances regulated secretion. J. Biol. Chem 270, 16714-16718.[Abstract/Free Full Text]

Darchen, F., Zahraoui, A., Hammel, F., Monteils, M.-P., Tavitian, A. and Scherman, D (1990). Association of the GTP-binding protein Rab3A with bovine adrenal chromaffin granules. Proc. Nat. Acad. Sci. USA 87, 5692-5696.[Abstract/Free Full Text]

Darchen, F., Senyshyn, J., Brondyk, W. H., Taatjes, D. J., Holz, R. W., Henry, J. P., Denizot, J. P., Macara, I. G (1995). The GTPase Rab3a is associated with large dense core vesicles in bovine chromaffin cells and rat PC12 cells. J. Cell Sci 108, 1639-1649.[Abstract]

Elferink, L. A., Anzai, K. and Scheller, R. H (1992). rab15, a novel low molecular weight GTP-binding protein specifically expressed in rat brain. J. Biol. Chem 267, 5768-5775.[Abstract/Free Full Text]

Ferro-Novick, S. and Jahn, R (1994). Vesicle fusion from yeast to man. Nature 370, 191-193.[Medline]

Fischer von Mollard, G., Mignery, G. A., Baumert, M., Perin, M. S., Hanson, T. J., Burger, P. M., Jahn, R. and Sudhof, T. C (1990). rab3 is a small GTP-binding protein exclusively localized to synaptic vesicles. Proc. Nat. Acad. Sci. USA 87, 1988-1992.[Abstract/Free Full Text]

Fischer von Mollard, G., Sudhof, T. C. and Jahn, R (1991). A small GTP-binding protein dissociates from synaptic vesicles during exocytosis. Nature 349, 79-81.[Medline]

Fischer von Mollard, G., Stahl, B., Li, C., Sudhof, T. C. and Jahn, R (1994). Rab proteins in regulated exocytosis. Trends Biochem. Sci 19, 164-168.[Medline]

Fischer von Mollard, G., Stahl, B., Khokhlatchev, A., Sudhof, T. C. and Jahn, R (1994). Rab3C is a synaptic vesicle protein that dissociates from synaptic vesicles after stimulation of exocytosis. J. Biol. Chem 269, 10971-10974.[Abstract/Free Full Text]

Geppert, M., Bolshakov, V. Y., Siegelbaum, S. A., Takei, K., De Camilli, P., Hammer, R. E. and Sudhof, T. C (1994). The role of Rab3A in neurotransmitter release. Nature 369, 493-497.[Medline]

Gorvel, J.-P., Chavrier, P., Zerial, M. and Gruenberg, J (1991). Rab5 controls early endosome fusion in vitro. Cell 64, 915-925.[Medline]

Goud, B., Salminen, A., Walworth, N. C. and Novick, P. J (1988). A GTP-binding protein required for secretion rapidly associates with secretory vesicles and the plasma membrane in yeast. Cell 53, 753-768.[Medline]

Holz, R., Brondyk, W. H., Senter, R. A., Kuzion, L. and Macara, I. G (1994). Evidence for the involvement of Rab3A in Ca2+-dependent exocytosis from adrenal chromaffin cells. J. Biol. Chem 269, 10229-10234.[Abstract/Free Full Text]

Inagaki, N., Mizuta, M. and Seino, S (1994). Cloning of a mouse rabphilin-3A expressed in hormone-secreting cells. J. Biochem 116, 239-242.

Jena, B. P., Gumkowski, F. D., Konieczko, E. M., Fischer von Mollard, G., Jahn, R. and Jamieson, J. D (1994). Redistribution of a Rab3-like GTP-binding protein from secretory granules to the Golgi complex in pancreatic acinar cells during regulated exocytosis. J. Cell Biol 124, 43-53.[Abstract/Free Full Text]

Johannes, L., Lledo, P.-M., Roa, M., Vincent, J.-D., Henry, J.-P. and Darchen, F (1994). The GTPase Rab3a negatively controls calcium-dependent exocytosis in neuroendocrine cells. EMBO J 13, 2029-2037.[Medline]

Kikuchi, A., Yamashita, T., Kawata, M., Yamamoto, K., Ikeda, K., Tanimoto, T. and Takai, Y (1988). Purification and characterization of a novel GTP-binding protein with molecular weight of 24,000 from bovine brain membranes. J. Biol. Chem 263, 2897-2904.[Abstract/Free Full Text]

Kowluru, A., Rabaglia, M. E., Muse, K. E. and Metz, S. A (1994). Subcellular localization and kinetic characterization of guanine nucleotide binding proteins in normal rat and human pancreatic islets and transformedcells. Biochim. Biophys. Acta 1222, 348-359.[Medline]

Lang, J., Nishimoto, I., Okamoto, T., Regazzi, R., Kiraly, C., Weller, U. and Wollheim, C. B (1995). Direct control of exocytosis by receptor-mediated activation of the heterotrimeric GTPases Giand Goor by the expression of their active Gsubunits. EMBO J 14, 3635-3644.[Medline]

Lankat-Buttgereit, B., G\232ke, R., Fehmann, H. C., Niess, C. and G\232ke B (1992). Expression of the ras-related rab3a gene in insulinoma-derived cell lines. FEBS Lett 312, 183-186.[Medline]

Lankat-Buttgereit, B., Fehmann, H. C., Hering, B. J., Bretzel, R. G. and G\232ke, B (1994). Expression of the ras-related rab3a gene in human insulinomas and normal human pancreatic islets. Pancreas 9, 434-438.[Medline]

Li, C., Takei, K., Geppert, M., Daniell, L., Stenius, K., Chapman, E. R., Jahn, R., De Camilli, P. and Sudhof, T. C (1994). Synaptic targeting of rabphilin-3A, a synaptic vesicle Ca2+/phospholipid-binding protein, depends on rab3A/3C. Neuron 13, 885-898.[Medline]

Li, G., Regazzi, R., Balch, W. E. and Wollheim, C. B (1993). Stimulation of insulin release from permeabilized HIT-T15 cells by a synthetic peptide corresponding to the effector domain of the small GTP-binding protein rab3. FEBS Lett 327, 145-149.[Medline]

Lian, J. P., Stone, S., Jiang, Y., Lyons, P. and Ferro-Novick, S (1994). Ypt1p implicated in v-SNARE activation. Nature 372, 698-701.[Medline]

Lledo, P.-M., Vernier, P., Vincent, J.-D., Mason, W. T. and Zorec, R (1993). Inhibition of Rab3B expression attenuates Ca2+-dependent exocytosis in rat anterior pituitary cells. Nature 364, 540-544.[Medline]

Martelli, A. M., Bareggi, R., Baldini, G., Scherer, P. E., Lodish, H. F. and Baldini, G (1995). Diffuse vesicular distribution of Rab3D in the polarized neuroendocrine cell line AtT20. FEBS Lett 368, 271-275.[Medline]

Matteoli, M., Takei, K., Cameron, R., Hurlbut, P., Johnston, P. A., Sudhof, T. C., Jahn, R. and De Camilli, P (1991). Association of Rab3A with synaptic vesicles at late stages of the secretory pathway. J. Cell Biol 115, 625-633.[Abstract/Free Full Text]

Moya, K. L., Tavitian, B., Zahraoui, A. and Tavitian, A (1992). Localization of the ras-like rab3A protein in the adult rat brain. Brain. Res 590, 118-127.[Medline]

Oberhauser, A. F., Monck, J. R., Balch, W. E. and Fernandez, J. M (1992). Exocytotic fusion is activated by Rab3a peptides. Nature 360, 270-273.[Medline]

Olszewski, S., Deeney, J. T., Schuppin, G. T., Williams, K. P., Corkey, B. E. and Rhodes, C. J (1994). Rab3A effector domain peptides induce insulin exocytosis via a specific interaction with a cytosolic protein doublet. J. Biol. Chem 269, 27987-27991.[Abstract/Free Full Text]

Orci, L., Like, A. A., Amherdt, M., Blodel, B., Kanazawa, V., Marliss, E. B., Lambert, A. E., Wollheim, C. B. and Renold, A. E (1973). Monolayer culture of neonatal rat pancreas: ultrastructural and biochemical study of functioning endocrine cells. J. Ultrastruct. Res 43, 270-297.[Medline]

Padfield, P. J., Balch, W. E. and Jamieson, J. D (1992). A synthetic peptide of the rab3a effector domain stimulates amylase release from permeabilized pancreatic acini. Proc. Nat. Acad. Sci. USA 89, 1656-1660.[Abstract/Free Full Text]

Pfeffer, S. R., Dirac-Svejstrup, A. B. and Soldati, T (1995). Rab GDP dissociation inhibitor: putting Rab GTPases in the right place. J. Biol. Chem 270, 17057-17059.[Free Full Text]

Pralong, W.-F., Bartley, C. and Wollheim, C. B (1990). Single islet-cells stimulation by nutrients: relationship between pyridine nucleotides, cytosolic Ca2+and secretion. EMBO J 9, 53-60.[Medline]

Reetz, A., Solimena, M., Matteoli, M., Folli, F., Takei, K. and De Camilli, P (1991). GABA and pancreatic-cells: colocalization of glutamic acid decarboxylase (GAD) and GABA with synaptic-like microvesicles suggests their role in GABA storage and secretion. EMBO J 10, 1275-1284.[Medline]

Regazzi, R., Li, G., Deshusses, J. and Wollheim, C. B (1990). Stimulus-response coupling in insulin-secreting HIT cells. J. Biol. Chem 265, 15003-15009.[Abstract/Free Full Text]

Regazzi, R., Ullrich, S., Kahn, R. A. and Wollheim, C. B (1991). Redistribution of ADP-ribosylation factor during stimulation of permeabilized cells with GTP analogues. Biochem. J 275, 639-644.

Regazzi, R., Kikuchi, A., Takai, Y. and Wollheim, C. B (1992). The small GTP-binding proteins in the cytosol of insulin-secreting cells are complexed to GDP dissociation inhibitor proteins. J. Biol. Chem 267, 17512-17519.[Abstract/Free Full Text]

Regazzi, R., Vallar, L., Ullrich, S., Ravazzola, M., Kikuchi, A., Takai, Y. and Wollheim, C. B (1992). Characterization of small-molecular-mass guanine-nucleotide-binding regulatory proteins in insulin-secreting cells and PC12 cells. Eur. J. Biochem 208, 729-737.[Medline]

Regazzi, R., Sasaki, T., Takahashi, K., Jonas, J. C., Volker, C., Stock, J. B., Takai, Y. and Wollheim, C. B (1995). Prenylcysteine analogs mimicking the C-terminus of GTP-binding proteins stimulate exocytosis from permeabilized HIT-T15 cells. Biochim. Biophys. Acta 1268, 268-278.

Regazzi, R., Wollheim, C. B., Lang, J., Theler, J. M., Rossetto, O., Montecucco, C., Sadoul, K., Weller, U., Palmer, M. and Thorens, B (1995). VAMP-2 and cellubrevin are expressed in pancreatic-cells and are essential for Ca2+-but not for GTP S-induced insulin secretion. EMBO J 14, 2723-2730.[Medline]

Ricordi, C., Lacy, P. E., Finke, E. H., Olack, B. J. and Sharp, D. W (1988). Automated method for isolation of human pancreatic islets. Diabetes 37, 413-420.[Abstract]

Rorsman, P., Berggren, P.-O., Bokvist, K., Ericson, H., M\232hler, H., Oestenson, C.-G. and Smith, P. A (1989). Glucose-inhibition of glucagon secretion involves activation of GABAA-receptor chloride channels. Nature 341, 233-236.[Medline]

Roth, J., Bendayan, M. and Orci, L (1978). Ultrastructural localization of intracellular antigens by the use of Protein A-gold complex. J. Histochem. Cytochem 26, 1074-1078.[Abstract]

Rouiller, D. G., Cirulli, V. and Halban, P. A (1990). Differences in aggregation properties and levels of the neural cell adhesion molecule (NCAM) between islet cell types. Exp. Cell Res 191, 305-312.[Medline]

Senyshyn, J., Balch, W. E. and Holz, R. W (1992). Synthetic peptides of the effector-binding domain of rab enhance secretion from digitonin-permeabilized chromaffin cells. FEBS Lett 309, 41-46.[Medline]

Shirataki, H., Kaibuchi, K., Yamaguchi, T., Wada, K., Horiuchi, H. and Takai, Y (1992). A possible target protein for smg-25A/rab3A small GTP-binding protein. J. Biol. Chem 267, 10946-10949.[Abstract/Free Full Text]

Shirataki, H., Kaibuchi, K., Sakoda, T., Kishida, S., Yamaguchi, T., Wada, K., Miyazaki, M. and Takai, Y (1993). Rabphilin-3A, a putative target protein for smg p25/rab3A p25 small GTP-binding protein related to synaptotagmin. Mol. Cell. Biol 13, 2061-2068.[Abstract/Free Full Text]

Sogaard, M., Tani, K., Ye, R. R., Geromanos, S., Tempst, P., Kirchhausen, T., Rothman, J. E. and Sollner, T (1994). A Rab protein is required for the assembly of SNARE complexes in the docking of transport vesicles. Cell 78, 937-948.[Medline]

Soldati, T., Shapiro, A. D., Dirac-Svejstrup, B. A. and Pfeffer, S. R (1994). Membrane targeting of the small GTPase Rab9 is accompanied by nucleotide exchange. Nature 369, 76-78.[Medline]

Sorenson, R. L., Garry, D. G. and Brelje, T. C (1991). Structural and functional considerations of GABA in islets of Langerhans. Diabetes 40, 1365-1374.[Abstract]

Takai, Y., Kaibuchi, K., Kikuchi, A. and Kawata, M (1992). Small GTP-binding proteins. Int. Rev. Cytol 133, 187-230.[Medline]

Thomas-Reetz, A., Hell, J. W., During, M. J., Walch-Solimena, C., Jahn, R. and De Camilli, P (1993). A-aminobutyric acid transporter driven by a proton pump is present in synaptic-like microvesicles of pancreatic cells. Proc. Nat. Acad. Sci. USA 90, 5317-5321.[Abstract/Free Full Text]

Tokuyasu, K. T (1980). Immunochemistry on ultrathin frozen sections. Histochem. J 12, 381-403.[Medline]

Ullrich, O., Stenmark, H., Alexandrov, K., Huber, L. A., Kaibuchi, K., Sasaki, T., Takai, Y. and Zerial, M (1993). Rab GDP dissociation inhibitor as a general regulator for the membrane association of rab proteins. J. Biol. Chem 268, 18143-18150.[Abstract/Free Full Text]

Vallar, L., Biden, T. J. and Wollheim, C. B (1987). Guanine nucleotides induce Ca2+-independent insulin secretion from permeabilized RINm5F cells. J. Biol. Chem 262, 5049-5056.[Abstract/Free Full Text]

Yamaguchi, T., Shiratachi, H., Kishida, S., Miyazaki, M., Nishikawa, J., Wada, K., Numata, S., Kaibuchi, K. and Takai, Y (1993). Two functionally different domains of rabphilin-3A, Rab3A p25/smg p25A-binding and phospholipid-and Ca2+-binding domains. J. Biol. Chem 268, 27164-27170.[Abstract/Free Full Text]


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J. Cell Sci.Home page
G Joberty, P. Stabila, T Coppola, I. Macara, and R Regazzi
High affinity Rab3 binding is dispensable for Rabphilin-dependent potentiation of stimulated secretion
J. Cell Sci., January 10, 1999; 112(20): 3579 - 3587.
[Abstract] [PDF]


Home page
J. Cell Sci.Home page
H Zhang, W. Kelley, L. Chamberlain, R. Burgoyne, and J Lang
Mutational analysis of cysteine-string protein function in insulin exocytosis
J. Cell Sci., January 5, 1999; 112(9): 1345 - 1351.
[Abstract] [PDF]


Home page
Am. J. Respir. Cell Mol. Bio.Home page
M. J. Tuvim, R. Adachi, J. F. Chocano, R. H. Moore, R. M. Lampert, E. Zera, E. Romero, B. J. Knoll, and B. F. Dickey
Rab3D, a Small GTPase, Is Localized on Mast Cell Secretory Granules and Translocates to the Plasma Membrane upon Exocytosis
Am. J. Respir. Cell Mol. Biol., January 1, 1999; 20(1): 79 - 89.
[Abstract] [Full Text]


Home page
CROBMHome page
E.L. Watson
GTP-Binding Proteins and Regulated Exocytosis
Critical Reviews in Oral Biology & Medicine, January 1, 1999; 10(3): 284 - 306.
[Abstract] [Full Text] [PDF]


Home page
Endocr. Rev.Home page
P. M. Jones and S. J. Persaud
Protein Kinases, Protein Phosphorylation, and the Regulation of Insulin Secretion from Pancreatic {beta}-Cells.
Endocr. Rev., August 1, 1998; 19(4): 429 - 461.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
F. Doussau, A. Clabecq, J.-P. Henry, F. Darchen, and B. Poulain
Calcium-Dependent Regulation of Rab3 in Short-Term Plasticity
J. Neurosci., May 1, 1998; 18(9): 3147 - 3157.
[Abstract] [Full Text] [PDF]


Home page
JCBHome page
G. Baldini, G. Baldini, G. Wang, M. Weber, M. Zweyer, R. Bareggi, J. W. Witkin, and A. M. Martelli
Expression of Rab3D N135I Inhibits Regulated Secretion of ACTH in AtT-20 Cells
J. Cell Biol., January 26, 1998; 140(2): 305 - 313.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
F Miralles, P Czernichow, and R Scharfmann
Follistatin regulates the relative proportions of endocrine versus exocrine tissue during pancreatic development
Development, January 3, 1998; 125(6): 1017 - 1024.
[Abstract] [PDF]


Home page
J. Biol. Chem.Home page
L. P. Haynes, G. J. O. Evans, A. Morgan, and R. D. Burgoyne
A Direct Inhibitory Role for the Rab3-specific Effector, Noc2, in Ca2+-regulated Exocytosis in Neuroendocrine Cells
J. Biol. Chem., March 23, 2001; 276(13): 9726 - 9732.
[Abstract] [Full Text] [PDF]


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