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Toxicon : Official Journal of the International Society on Toxinology|April 18, 2001
Active-site mutagenesis of tetanus neurotoxin implicates TYR-375 and GLU-271 in metalloproteolytic activityO Rossetto, P Caccin, M Rigoni, et al.Clinica Chimica Acta; International Journal of Clinical Chemistry|February 17, 2000
Bacterial toxins with intracellular protease activityO Rossetto, M de Bernard, R Pellizzari, et al.The Journal of Biological Chemistry|November 15, 1993
Identification of the nerve terminal targets of botulinum neurotoxin serotypes A, D, and EG Schiavo, O Rossetto, S Catsicas, et al.Nature|October 29, 1992
Tetanus and botulinum-B neurotoxins block neurotransmitter release by proteolytic cleavage of synaptobrevinG Schiavo, F Benfenati, B Poulain, et al.Journal of Physiology, Paris|October 23, 1998
On the action of botulinum neurotoxins A and E at cholinergic terminalsP Washbourne, R Pellizzari, O Rossetto, et al.Toxicon : Official Journal of the International Society on Toxinology|October 19, 2017
The binding of botulinum neurotoxins to different peripheral neuronsO RossettoThe Journal of Comparative Neurology|April 1, 1996
Common and distinct fusion proteins in axonal growth and transmitter releaseA Osen-Sand, J K Staple, E Naldi, et al.The EMBO Journal|June 15, 1995
VAMP-2 and cellubrevin are expressed in pancreatic beta-cells and are essential for Ca(2+)-but not for GTP gamma S-induced insulin secretionR Regazzi, C B Wollheim, J Lang, et al.Cellular and Molecular Life Sciences : CMLS|April 17, 2009
Calcium imaging of muscle cells treated with snake myotoxins reveals toxin synergism and presence of acceptorsM Cintra-Francischinelli, P Pizzo, L Rodrigues-Simioni, et al.Pageof 30