Virulence studies on chromosomal α-toxin and θ-toxin mutants constructed by allelic exchange provide genetic evidence for the essential role of α-toxin in Clostridium perfringens-mediated gas gangrene
Awad MM, Bryant AE, Stevens DL, Rood JI. 1995. Virulence studies on chromosomal α-toxin and θ-toxin mutants constructed by allelic exchange provide genetic evidence for the essential role of α-toxin in Clostridium perfringens-mediated gas gangrene. Mol. Microbiol. 15:191-202
The virR/virS locus regulates the transcription of genes encoding extracellular toxin production in Clostridium perfringens
Ba-Thein W, Lyristis M, Ohtani K, Nisbet IT. Hayashi H, et al. 1996. The virR/ virS locus regulates the transcription of genes encoding extracellular toxin production in Clostridium perfringens. J. Bacteriol. 178:2514-20
Isolation of a plasmid responsible for caseinase activity in Clostridium perfringens ATCC 3626B
Blaschek HP, Solberg M. 1981. Isolation of a plasmid responsible for caseinase activity in Clostridium perfringens ATCC 3626B. J. Bacteriol. 147: 262-66
A complex array of Hpr consensus DNA recognition sequences proximal to the enterotoxin gene in Clostridium perfringens type A
Brynestad S, Iwanejko LA, Stewart GSAB, Granum PE. 1994. A complex array of Hpr consensus DNA recognition sequences proximal to the enterotoxin gene in Clostridium perfringens type A. Microbiology 140:97-104
The Clostridium perfringens enterotoxin gene is on a transposable genetic element in type A human food poisoning strains
Brynestad S, Synstad B, Granum PE. 1997. The Clostridium perfringens enterotoxin gene is on a transposable genetic element in type A human food poisoning strains. Microbiology 143:2109-15