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2000

Journal Article

Ca2+ and Na+ contribute to the swelling of differentiated neuroblastoma cells induced by equinatoxin-II

Meunier, FA, Frangez, R, Benoit, E, Ouanounou, G, Rouzaire-Dubois, B, Suput, D and Molgo, J (2000). Ca2+ and Na+ contribute to the swelling of differentiated neuroblastoma cells induced by equinatoxin-II. Toxicon, 38 (11), 1547-1560. doi: 10.1016/S0041-0101(00)00088-X

Ca2+ and Na+ contribute to the swelling of differentiated neuroblastoma cells induced by equinatoxin-II

2000

Journal Article

Equinatoxin II increases intracellular Ca2+ in NG 108–15 cells

Frangež, Robert, Meunier, Frederick, Molgo, Jordi and Suput, Dusan (2000). Equinatoxin II increases intracellular Ca2+ in NG 108–15 cells. Pflugers Archiv European Journal of Physiology, 439 (7), R100-R101. doi: 10.1007/BF03376535

Equinatoxin II increases intracellular Ca2+ in NG 108–15 cells

2000

Journal Article

Trachynilysin mediates SNARE-dependent release of catecholamines from chromaffin cells via external and stored Ca2+

Meunier, FA, Mattei, C, Chameau, P, Lawrence, G, Colasante, C, Kreger, AS, Dolly, JO and Molgo, J (2000). Trachynilysin mediates SNARE-dependent release of catecholamines from chromaffin cells via external and stored Ca2+. Journal of Cell Science, 113 (7), 1119-1125.

Trachynilysin mediates SNARE-dependent release of catecholamines from chromaffin cells via external and stored Ca2+

2000

Journal Article

Effects of trachynilysin, a protein isolated from stonefish (Synanceia trachynis) venom, on frog atrial heart muscle

Sauviat, MP, Meunier, FA, Kreger, A and Molgo, J (2000). Effects of trachynilysin, a protein isolated from stonefish (Synanceia trachynis) venom, on frog atrial heart muscle. Toxicon, 38 (7), 945-959. doi: 10.1016/S0041-0101(99)00207-X

Effects of trachynilysin, a protein isolated from stonefish (Synanceia trachynis) venom, on frog atrial heart muscle

2000

Journal Article

Trachynilysin, a protein neurotoxin isolated from stonefish (Synanceia trachynis) venom, increases spontaneous quantal acetylcholine release from Torpedo marmorata neuromuscular junctions

Ouanounou, G, Mattei, C, Meunier, FA, Kreger, AS and Molgo, J (2000). Trachynilysin, a protein neurotoxin isolated from stonefish (Synanceia trachynis) venom, increases spontaneous quantal acetylcholine release from Torpedo marmorata neuromuscular junctions. Cybium, 24 (3), 149-156.

Trachynilysin, a protein neurotoxin isolated from stonefish (Synanceia trachynis) venom, increases spontaneous quantal acetylcholine release from Torpedo marmorata neuromuscular junctions

1999

Journal Article

Recreation of neuronal Kv1 channel oligomers by expression in mammalian cells using semliki forest virus

Shamotienko, O, Akhtar, S, Sidera, C, Meunier, FA, Ink, B, Weir, M and Dolly, JO (1999). Recreation of neuronal Kv1 channel oligomers by expression in mammalian cells using semliki forest virus. Biochemistry, 38 (51), 16766-16776. doi: 10.1021/bi991039n

Recreation of neuronal Kv1 channel oligomers by expression in mammalian cells using semliki forest virus

1999

Journal Article

Neurotoxins targetting receptor site 5 of voltage-dependent sodium channels increase the nodal volume of myelinated axons

Mattei, C, Dechraoui, MY, Molgo, J, Meunier, FA, Legrand, AM and Benoit, E (1999). Neurotoxins targetting receptor site 5 of voltage-dependent sodium channels increase the nodal volume of myelinated axons. Journal of Neuroscience Research, 55 (6), 666-673. doi: 10.1002/(SICI)1097-4547(19990315)55:63.0.CO;2-H

Neurotoxins targetting receptor site 5 of voltage-dependent sodium channels increase the nodal volume of myelinated axons

1999

Journal Article

Norepinephrine exocytosis stimulated by alpha-latrotoxin requires both external and stored Ca2+ and is mediated by latrophilin, G proteins and phospholipase C

Rahman, MA, Ashton, AC, Meunier, FA, Davletov, BA, Dolly, JO and Ushkaryov, YA (1999). Norepinephrine exocytosis stimulated by alpha-latrotoxin requires both external and stored Ca2+ and is mediated by latrophilin, G proteins and phospholipase C. Philosophical Transactions of the Royal Society of London Series B-Biological Sciences, 354 (1381), 379-386. doi: 10.1098/rstb.1999.0390

Norepinephrine exocytosis stimulated by alpha-latrotoxin requires both external and stored Ca2+ and is mediated by latrophilin, G proteins and phospholipase C

1998

Journal Article

Vesicle exocytosis stimulated by α-latrotoxin is mediated by latrophilin and requires both external and stored Ca2+

Davletov, BA, Meunier, FA, Ashton, AC, Matsushita, H, Hirst, WD, Lelianova, VG, Wilkin, GP, Dolly, JO and Ushkaryov, YA (1998). Vesicle exocytosis stimulated by α-latrotoxin is mediated by latrophilin and requires both external and stored Ca2+. EMBO Journal, 17 (14), 3909-3920. doi: 10.1093/emboj/17.14.3909

Vesicle exocytosis stimulated by α-latrotoxin is mediated by latrophilin and requires both external and stored Ca2+

1998

Journal Article

The peripheral nerve and the neuromuscular junction are affected in the tenascin-C-deficient mouse

Cifuentes-Diaz, C, Velasco, E, Meunier, FA, Goudou, D, Belkadi, L, Faille, L, Murawsky, M, Angaut-Petit, D, Molgo, J, Schachner, M, Saga, Y, Aizawa, S and Rieger, F (1998). The peripheral nerve and the neuromuscular junction are affected in the tenascin-C-deficient mouse. Cellular and Molecular Biology, 44 (2), 357-379.

The peripheral nerve and the neuromuscular junction are affected in the tenascin-C-deficient mouse

1997

Journal Article

Marine Toxins Affecting Quantal Acetylcholine Release and Transmission at the Vertebrate Neuromuscular Junction

Molgó, Jordi, Meunier, Frédéric A., Colasante, Cesare and Poulain, Bernard (1997). Marine Toxins Affecting Quantal Acetylcholine Release and Transmission at the Vertebrate Neuromuscular Junction. Advances in Organ Biology, 2 (C), 249-284. doi: 10.1016/S1569-2590(08)60189-5

Marine Toxins Affecting Quantal Acetylcholine Release and Transmission at the Vertebrate Neuromuscular Junction

1997

Journal Article

Sodium-dependent increase in quantal secretion induced by brevetoxin-3 in Ca2+-free medium is associated with depletion of synaptic vesicles and swelling of motor nerve terminals in situ

Meunier, FA, Colasante, C and Molgo, J (1997). Sodium-dependent increase in quantal secretion induced by brevetoxin-3 in Ca2+-free medium is associated with depletion of synaptic vesicles and swelling of motor nerve terminals in situ. Neuroscience, 78 (3), 883-893. doi: 10.1016/S0306-4522(96)00568-4

Sodium-dependent increase in quantal secretion induced by brevetoxin-3 in Ca2+-free medium is associated with depletion of synaptic vesicles and swelling of motor nerve terminals in situ

1997

Journal Article

Selective depolarization of the muscle membrane in frog nerve-muscle preparations by a chromatographically purified extract of the dinoflagellate Ostreopsis lenticularis

Meunier, FA, Mercado, JA, Molgo, J, Tosteson, TR and deMotta, GE (1997). Selective depolarization of the muscle membrane in frog nerve-muscle preparations by a chromatographically purified extract of the dinoflagellate Ostreopsis lenticularis. British Journal of Pharmacology, 121 (6), 1224-1230. doi: 10.1038/sj.bjp.0701256

Selective depolarization of the muscle membrane in frog nerve-muscle preparations by a chromatographically purified extract of the dinoflagellate Ostreopsis lenticularis

1997

Journal Article

Nitric oxide and peroxynitrite affect differently acetylcholine release, choline acetyltransferase activity, synthesis, and compartmentation of newly formed acetylcholine in Torpedo marmorata synaptosomes

Gaudry-Talarmain, YM, Moulian, N, Meunier, FA, Blanchard, B, Angaut-Petit, D, Faille, L and Ducrocq, C (1997). Nitric oxide and peroxynitrite affect differently acetylcholine release, choline acetyltransferase activity, synthesis, and compartmentation of newly formed acetylcholine in Torpedo marmorata synaptosomes. Nitric Oxide - Biology and Chemistry, 1 (4), 330-345. doi: 10.1006/niox.1997.0141

Nitric oxide and peroxynitrite affect differently acetylcholine release, choline acetyltransferase activity, synthesis, and compartmentation of newly formed acetylcholine in Torpedo marmorata synaptosomes

1996

Journal Article

Enhancement of quantal transmitter release and mediatophore expression by cyclic AMP in fibroblasts loaded with acetylcholine

FalkVairant, J, Israel, M, Bruner, J, Stinnakre, J, Meunier, FM, Gaultier, P, Meunier, FA, Lesbats, B, Synguelakis, M, Correges, P and Dunant, Y (1996). Enhancement of quantal transmitter release and mediatophore expression by cyclic AMP in fibroblasts loaded with acetylcholine. Neuroscience, 75 (2), 353-360. doi: 10.1016/0306-4522(96)00260-6

Enhancement of quantal transmitter release and mediatophore expression by cyclic AMP in fibroblasts loaded with acetylcholine

1996

Journal Article

Selective depletion of clear synaptic vesicles and enhanced quantal transmitter release at frog motor nerve endings produced by trachynilysin, a protein toxin isolated from stonefish (Synanceia trachynis) venom

Colasante, C, Meunier, FA, Kreger, AS and Molgo, J (1996). Selective depletion of clear synaptic vesicles and enhanced quantal transmitter release at frog motor nerve endings produced by trachynilysin, a protein toxin isolated from stonefish (Synanceia trachynis) venom. European Journal of Neuroscience, 8 (10), 2149-2156. doi: 10.1111/j.1460-9568.1996.tb00736.x

Selective depletion of clear synaptic vesicles and enhanced quantal transmitter release at frog motor nerve endings produced by trachynilysin, a protein toxin isolated from stonefish (Synanceia trachynis) venom

1996

Journal Article

Expression of the vesicular acetylcholine transporter in mammalian cells

Varoqui, H, Meunier, FM, Meunier, FA, Molgo, J, Berrard, S, Cervini, R, Mallet, J, Israel, M and Diebler, MF (1996). Expression of the vesicular acetylcholine transporter in mammalian cells. Cholinergic Mechanisms: From Molecular Biology to Clinical Significance, 109, 83-95.

Expression of the vesicular acetylcholine transporter in mammalian cells

1996

Journal Article

Reversed mode Na+-Ca2+ exchange activated by ciguatoxin (CTX-1b) enhances acetylcholine release from Torpedo cholinergic synaptosomes

GaudryTalarmain, YM, Molgo, J, Meunier, FA, Moulian, N and Legrand, AM (1996). Reversed mode Na+-Ca2+ exchange activated by ciguatoxin (CTX-1b) enhances acetylcholine release from Torpedo cholinergic synaptosomes. Sodium-Calcium Exchange, 779, 404-406. doi: 10.1111/j.1749-6632.1996.tb44814.x

Reversed mode Na+-Ca2+ exchange activated by ciguatoxin (CTX-1b) enhances acetylcholine release from Torpedo cholinergic synaptosomes