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Ahnert-Hilger, G., Sch\212fer, T., Spicher, K., Grund, C., Schultz, G. and Wiedenmann, B (1994). Detection of G protein heterotrimers on large dense core and small synaptic vesicles of neuroendocrine and neuronal cells. Eur. J. Cell Biol 65, 26-38.[Medline]

Aridor, M., Rajmilevich, G., Beaven, M. A. and Sagi-Eisenberg, R (1993). Activation of exocytosis by the heterotrimeric G protein Gi3. Science 262, 1569-1572.[Abstract/Free Full Text]

Bittner, M. A. and Holz, R. W (1992). Kinetic analysis of secretion from permeabilized adrenal chromaffin cells reveals distinct components. J. Biol. Chem 267, 16219-16225.[Abstract/Free Full Text]

Burgoyne, R. D. and Morgan, A (1998). Analysis of regulated exocytosis in adrenal chromaffin cells: insights into NSF/SNAP/SNARE function. BioEssays 20, 328-335.[Medline]

Calakos, N. and Scheller, R. H (1996). Synaptic vesicle biogenesis, docking, and fusion: molecular description. Physiol. Rev 76, 1-29.[Abstract/Free Full Text]

Carter, T. D. and Ogden, D (1994). Acetylcholine-stimulated changes of membrane potential and intracellular Ca2+concentration recorded in endothelial cells in situ in the isolated rat aorta. Pflugers Archiv 428, 476-484.[Medline]

Chasserot-Golaz, S., Vitale, N., Sagot, I., Delouche, B., Dirring, S., Pradel, L. A., Henry, J. P., Aunis, D. and Bader, M. F (1996). Annexin II in exocytosis: catecholamine secretion requires the translocation of p36 to the subplasmalemmal region in chromaffin cells. J. Cell Biol 133, 1217-1236.[Abstract/Free Full Text]

Ellis-Davies, G. C. and Kaplan, J. H (1994). Nitrophenyl-EGTA, a photolabile chelator that selectively binds Ca2+with high affinity and releases it rapidly upon photolysis. Proc. Nat. Acad. Sci. USA 91, 187-191.[Abstract/Free Full Text]

El Far, O., Charvin, N., Leveque, C., Martin-Moutot, N., Takahashi, M., and Seagar, M. J (1995). Interaction of a synaptobrevin (VAMP)-syntaxin complex with presynaptic calcium channels. FEBS Lett 361, 101-105.[Medline]

Gasman, S., Chasserot-Golaz, S., Popoff, M. R., Aunis, D. and Bader, M. F (1997). Trimeric G proteins control exocytosis in chromaffin cells. Go regulates the peripheral actin network and catecholamine secretion by a mechanism involving the small GTP-binding protein Rho. J. Biol. Chem 272, 20564-20571.[Abstract/Free Full Text]

Grynkiewicz, G., Poenie, M. and Tsien, R. Y (1985). A new generation of Ca2+indicators with greatly improved fluorescence properties. J. Biol. Chem 260, 3440-3450.[Abstract/Free Full Text]

Hamm, H. E., Deretic, D., Arendt, A., Hargrave, P. A., Koenig, B. and Hofmann, K. P (1988). Site of G protein binding to rhodopsin mapped with synthetic peptides from the alpha subunit. Science 241, 832-835.[Abstract/Free Full Text]

Hay, J. C. and Martin, T. F. J (1992). Resolution of regulated secretion into sequential MgATP-dependent and calcium-dependent stages mediated by distinct cytosolic proteins. J. Cell Biol 119, 139-151.[Abstract/Free Full Text]

Heinemann, C., Chow, R. H., Neher, E. and Zucker, R. S (1994). Kinetics of the secretory response in bovine chroaffin cells following flash photolysis of caged Ca2+. Biophys. J 67, 2546-2557.[Medline]

Henkel, A. W. and Almers, W (1996). Fast steps in exocytosis and endocytosis studied by capacitance measurements in endocrine cells. Curr. Opin. Neurobiol 6, 350-357.[Medline]

Higashijima, T., Burnier, J. and Ross, E. M (1990). Regulation of Gi and Go by mastoparan, related amphiphilic peptides, and hydrophobic amines. Mechanism and structural determinants of activity. J. Biol. Chem 265, 14176-14186.[Abstract/Free Full Text]

Jasmin, B. J., Cartaud, J., Bornens, M. and Changeux, J. P (1989). Golgi apparatus in chick skeletal muscle: changes in its distribution during end plate development and after denervation. Proc. Nat. Acad. Sci. USA 86, 7218-7222.[Abstract/Free Full Text]

Kasai, H., Takagi, H., Ninomiya, Y., Kishimoto, T., Ito, K., Yoshida, A., Yoshioka, T. and Miyashita, Y (1996). Two components of exocytosis and endocytosis in phaeochromocytoma cells studied using caged Ca2+compounds. J. Physiol 494, 53-65.

Konrad, R. J., Young, R. A., Record, R. D., Smith, R. M., Butkerait, P., Manning, D., Jarett, L., Wolf, B. A (1995). The heterotrimeric G-protein Gi is localized to the insulin secretory granules of beta-cells and is involved in insulin exocytosis. J. Biol. Chem 270, 12869-12876.[Abstract/Free Full Text]

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 Gi and G(o) or by the expression of their active G alpha subunits. EMBO J 14, 3636-3644.

Leveque, C., El Far, O., Martin-Moutot, N., Sato, K., Kato, R., Takahashi, M., Seagar, M. J (1994). Purification of the N-type calcium channel associated with syntaxin and synaptotagmin. A complex implicated in synaptic vesicle exocytosis. J. Biol. Chem 269, 6306-6312.[Abstract/Free Full Text]

Leveque, C., Hoshino, T., David, P., Shoji-Kasai, Y., Leys, K., Omori, A., Lang, B., El Far, O., Sato, K., Martin-Moutot, N. et al (1992). The synaptic vesicle protein synaptotagmin associates with calcium channels and is a putative Lambert-Eaton myasthenic syndrome antigen. Proc. Nat. Acad. Sci. USA 89, 3625-3629.[Abstract/Free Full Text]

Lindau, M. and Neher, E (1988). Patch-clamp techniques for time-resolved capacitance measurements in single cells. Pflugers Arch 411, 137-146.[Medline]

Mains, R. E. and Eipper, B. A (1979). Synthesis and secretion of corticotropins, melanotropins and endorphins by rat intermediate pituitary cells. J. Biol. Chem 254, 7885-7894.[Abstract/Free Full Text]

Neher, E. and Marty, A (1982). Discrete changes of cell membrane capacitance observed under conditions of enhanced secretion in bovine adrenal chromaffin cells. Proc. Nat. Acad. Sci. USA 79, 6712-6716.[Abstract/Free Full Text]

Neher, E. and Zucker, R. S (1993). Multiple calcium-dependent processes related to secretion in bovine chromaffin cells. Neuron 10, 21-30.[Medline]

Ninomiya, Y., Kishimoto, T., Yamazawa, T., Ikeda, H., Miyashita, Y. and Kasai, H (1997). Kinetic diversity in the fusion of exocytotic vesicles. EMBO J 16, 929-934.[Medline]

Palm, D., Munch, G., Malek, D., Dees, C. and Hekman, M (1990). Identification of a Gs-protein coupling domain to the beta-adrenoceptor using site-specific synthetic peptides. Carboxyl terminus of Gs alpha is involved in coupling to beta-adrenoceptors. FEBS Lett 261, 294-298.[Medline]

Rapp, G. and Guth, K (1988). A low cost high intensity flash device for photolysis experiments. Pflugers Archiv 411, 200-203.[Medline]

Rupnik, M. and Zorec, R (1992). Cytosolic chloride ions stimulate Ca2+-induced exocytosis in melanotrophs. FEBS Lett 303, 221-223.[Medline]

Rupnik, M. and Zorec, R (1995). Intracellular Clmodulates Ca2+-induced exocytosis from rat melanotrophs through GTP-binding proteins. Pflugers Arch 431, 76-83.[Medline]

Rupnik, M., Law, G. J., Mason, W. T. and Zorec, R (1997). Mastoparan and Rab3AL peptide potentiation of calcium-independent secretory activity in rat melanotrophs is inhibited by GDPbetaS. FEBS Lett 411, 356-358.[Medline]

S\232llner, T. and Rothman, J. E (1994). Neurotransmission: harnessing fusion machinery at the synapse. Trends Neurosci 17, 344-348.[Medline]

Sudhof, T. C (1995). The synaptic vesicle cycle: a cascade of protein-protein interactions. Nature 375, 645-653.[Medline]

Takahashi, N., Kadowaki, T., Yazaki, Y., Miyashita, Y. and Kasai, H (1997). Multiple exocytotic pathways in pancreaticcells. J. Cell Biol 138, 55-64.[Abstract/Free Full Text]

Takahashi, M., Arimatsu, Y., Fujita, S., Fujimoto, Y., Kondo, S., Hama, T., Miyamoto, E (1991). Protein kinase C and Ca2+/calmodulin-dependent protein kinase II phosphorylate a novel 58-kDa protein in synaptic vesicles. Brain Res 551, 279-292.[Medline]

Thomas, P., Surprenant, A. and Almers, W (1990). Cytosolic Ca2+, exocytosis, and endocytosis in single melanotrophs of the rat pituitary. Neuron 5, 723-733.[Medline]

Thomas, P., Wong, J. G., Lee, A. K. and Almers, W (1993). A low affinity Ca2+receptor controls the final steps in peptide secretion from pituitary melanotrophs. Neuron 11, 93-104.[Medline]

Thomas, P., Wong, J. G. and Almers, W (1993). Millisecond studies of secretion in single rat pituitary cells stimulated by flash photolysis of caged Ca2+. EMBO J 12, 303-306.[Medline]

Vitale, N., Mukai, H., Rouot, B., Thierse, D., Aunis, D. and Bader, M. F (1993). Exocytosis in chromaffin cells. Possible involvement of the heterotrimeric GTP-binding protein G(o). J. Biol. Chem 268, 14715-14723.[Abstract/Free Full Text]

Vitale, N., Thierse, D., Aunis, D. and Bader, M. F (1994). Exocytosis inchromaffin cells: evidence for a MgATP-independent step that requiresa pertussis toxin-sensitive GTP-binding protein. Biochem. J 300, 217-227.

Vitale, N., Deloulme, J. C., Thierse, D., Aunis, S. and Bader, M. F (1994). GAP-43 controls the availability of secretory chromaffin graules for regulated exocytosis by stimulating a granule-associated Go. J. Biol. Chem 269, 30293-30298.[Abstract/Free Full Text]

Vitale, N., Gensse, M., Chasserot-Golaz, S., Aunis, D. and Bader, M. F (1996). Trimeric G proteins control regulated exocytosis in bovine cromaffin cells: Sequential involvement of Go associated with secretory granules and Gi3bound to the plasma membrane. Eur. J. Neurosci 8, 1275-1285.[Medline]

Weingarten, R., Ransn\212s, L., Mueller, H., Sklar, L. A. and Bokoch, G. M (1990). Mastoparan interacts with the carboxyl terminus of the alpha subunit of Gi. J. Biol. Chem 265, 11044-11049.[Abstract/Free Full Text]

Zupanc\377ic\377, G., Kocmur, L., Veranic\377, P., Grilc, S., Kordas\377, M. and Zorec, R (1994). The separation of exocytosis in rat melanotroph membrane capacitance records. J. Physiol 480, 539-552.


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