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  1. Cyclic Di-GMP Binding by an Assembly ATPase (PilB2) and Control of Type IV Pilin Polymerization in the Gram-Positive Pathogen Clostridium perfringens
  2. Analysis of the Spore Membrane Proteome in Clostridium perfringens Implicates Cyanophycin in Spore Assembly
  3. Hypermotility in Clostridium perfringens Strain SM101 Is Due to Spontaneous Mutations in Genes Linked to Cell Division
  4. Type IV Pili in Gram-Positive Bacteria
  5. Use of a Mariner-Based Transposon Mutagenesis System To Isolate Clostridium perfringens Mutants Deficient in Gliding Motility
  6. EtfA catalyses the formation of dipicolinic acid inClostridium perfringens
  7. The SpmA/B and DacF proteins of Clostridium perfringens play important roles in spore heat resistance
  8. The role of neutrophils and monocytic cells in controlling the initiation of Clostridium perfringens gas gangrene
  9. Type IV pili‐dependent gliding motility in the Gram‐positive pathogenClostridium perfringensand other Clostridia
  10. The anaerobic pathogen Clostridium perfringens can escape the phagosome of macrophages under aerobic conditions
  11. Regulation of Enterotoxin Production in Clostridium perfringens