Kinetic Evidence for the Presence of Putative Germination Receptors in C lostridium difficile Spores
- 15 August 2010
- journal article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 192 (16) , 4215-4222
- https://doi.org/10.1128/jb.00488-10
Abstract
Clostridium difficile is a spore-forming bacterium that causes Clostridium difficile-associated disease (CDAD). Intestinal microflora keeps C. difficile in the spore state and prevents colonization. Following antimicrobial treatment, the microflora is disrupted, and C. difficile spores germinate in the intestines. The resulting vegetative cells are believed to fill empty niches left by the depleted microbial community and establish infection. Thus, germination of C. difficile spores is the first required step in CDAD. Interestingly, C. difficile genes encode most known spore-specific protein necessary for germination, except for germination (Ger) receptors. Even though C. difficile Ger receptors have not been identified, taurocholate (a bile salt) and glycine (an amino acid) have been shown to be required for spore germination. Furthermore, chenodeoxycholate, another bile salt, can inhibit taurocholate-induced C. difficile spore germination. In the present study, we examined C. difficile spore germination kinetics to determine whether taurocholate acts as a specific germinant that activates unknown germination receptors or acts nonspecifically by disrupting spores' membranes. Kinetic analysis of C. difficile spore germination suggested the presence of distinct receptors for taurocholate and glycine. Furthermore, taurocholate, glycine, and chenodeoxycholate seem to bind to C. difficile spores through a complex mechanism, where both receptor homo- and heterocomplexes are formed. The kinetic data also point to an ordered sequential progression of binding where taurocholate must be recognized first before detection of glycine can take place. Finally, comparing calculated kinetic parameters with intestinal concentrations of the two germinants suggests a mechanism for the preferential germination of C. difficile spores in antibiotic-treated individuals.Keywords
This publication has 51 references indexed in Scilit:
- Dissecting interactions between nucleosides and germination receptors in Bacillus cereus 569 sporesMicrobiology, 2010
- A m ariner -Based Transposon System for In Vivo Random Mutagenesis of Clostridium difficileApplied and Environmental Microbiology, 2010
- Metabolism of Bile Salts in Mice Influences Spore Germination in Clostridium difficilePLOS ONE, 2010
- Requirements for Germination ofClostridium sordelliiSporesIn VitroJournal of Bacteriology, 2010
- Chenodeoxycholate Is an Inhibitor of Clostridium difficile Spore GerminationJournal of Bacteriology, 2009
- A Eukaryotic-like Ser/Thr Kinase Signals Bacteria to Exit Dormancy in Response to Peptidoglycan FragmentsCell, 2008
- Bile Salts and Glycine as Cogerminants for Clostridium difficile SporesJournal of Bacteriology, 2008
- Clostridium perfringens Spore Germination: Characterization of Germinants and Their ReceptorsJournal of Bacteriology, 2008
- The Conjugative Transposon Tn 5397 Has a Strong Preference for Integration into Its Clostridium difficile Target SiteJournal of Bacteriology, 2006
- The multidrug-resistant human pathogen Clostridium difficile has a highly mobile, mosaic genomeNature Genetics, 2006