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Molecular and Cellular Biology|January 1, 1988
Functional modification of a 21-kilodalton G protein when ADP-ribosylated by exoenzyme C3 of Clostridium botulinumE J Rubin, D M Gill, P Boquet, et al.Annales De Dermatologie Et De Venereologie|July 7, 2009
[Mechanisms of action of botulinum toxins and neurotoxins]B Poulain, E Lonchamp, E Jover, et al.Gene|January 13, 1998
Beta2 toxin, a novel toxin produced by Clostridium perfringensM Gibert, C Jolivet-Reynaud, M R Popoff, et al.Biochimica Et Biophysica Acta|September 11, 1986
Demonstration and chemical modification of a specific phosphate binding site in the phosphate-starvation-inducible outer membrane porin protein P of Pseudomonas aeruginosaR E Hancock, R BenzBiochimica Et Biophysica Acta|May 4, 1995
Shape of the potential energy barrier of the iodine-mediated halide transportK H Klotz, R BenzBiochimica Et Biophysica Acta|August 20, 1981
Properties of the large ion-permeable pores formed from protein F of Pseudomonas aeruginosa in lipid bilayer membranesR Benz, R E HancockBiophysical Journal|December 1, 1993
Kinetics of the iodine- and bromine-mediated transport of halide ions: demonstration of an interfacial complexation mechanismK H Klotz, R BenzFEMS Microbiology Letters|January 1, 1997
Immunological and functional comparison between Clostridium perfringens iota toxin, C. spiroforme toxin, and anthrax toxinsS Perelle, S Scalzo, S Kochi, et al.Journal of Clinical Microbiology|October 1, 1993
Polymerase chain reaction assay for diagnosis of potentially toxinogenic Corynebacterium diphtheriae strains: correlation with ADP-ribosylation activity assayD Hauser, M R Popoff, M Kiredjian, et al.Infection and Immunity|June 17, 2000
Clostridium perfringens iota-toxin requires activation of both binding and enzymatic components for cytopathic activityM Gibert, L Petit, S Raffestin, et al.Pageof 44