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E Samberger

Publications and source records attributed to E Samberger.

2 recordsLinked to original sources

Completion of the nucleotide sequence of the Enterococcus faecalis conjugative virulence plasmid pAD1 and identification of a second transfer origin.

pAD1 is a 59.3-kb plasmid in Enterococcus faecalis that has been the subject of intense investigation with regard to its pheromone-inducible conjugation behavior as well as its contribution to virulence. Approximately two-thirds of the pAD1 nucleotide sequence has been previously reported. Here we report on an analysis of the final approximately 22 kb, a significant portion of which is believed to encode structural genes associated with conjugation. The conjugation-related region was also found to contain a new (second) origin of conjugative transfer (oriT). A list of open reading frames covering the entire plasmid is presented.

Conjugation, Genetic↗

Why does Staphylococcus aureus secrete an Enterococcus faecalis-specific pheromone?

The long known fact that Staphylococcus aureus can secrete a peptide (staph-cAM373) which acts as a sex pheromone for strains of E. faecalis carrying the sex pheromone plasmid pAM373 was studied in detail. 85 of 100 independent isolates of S. aureus produced an activity inducing the pAM373 encoded adhesin resulting in a clumping reaction of E. faecalis (i.e. secreted staph-cAM373), but not a single one of 100 independent isolates of coagulase-negative Staphylococci possessed this activity. The production of peptides acting as sex pheromone for E. faecalis was observed only for sex pheromone plasmid pAM373, but not for sex pheromone plasmids pAD1 and pPD1. It was shown that the amount of staph-pAM373 produced during growth paralleled cell mass, therefore this peptide should not be used as a cell density indicator by S. aureus (i.e. has no quorum sensing function). The potential function of staph-cAM373 to trigger gene transfer from Escherichia faecalis to S. aureus is discussed.

Bacterial Adhesion↗