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Acceleration of Enterococcus faecalis Biofilm Formation by Aggregation Substance Expression in an Ex Vivo Model of Cardiac Valve Colonization

Figure 6

Alteration of the aggregation domain mutants in Asc10 lowers the ability of E. faecalis to bind to valve tissue.

(A) Double aggregation domain mutant (OG1SSp [pCF10-5]) with N-terminal aggregation domain deletion and central aggregation 31-aa insertion. The mutant is unable to bind as well as Asc10+ OG1SSp (pCF10). (B) Single aggregation domain mutants bind as well as Asc10+ OG1SSp (pCF10) initially, but over time the gap between the Asc10+ OG1SSp (pCF10) and mutant grows increasingly. The data shown are a compilation of at least three experiments. * denotes p≤0.02, with respect to Asc10+ OG1SSp (pCF10) valve bacterial loads.

Figure 6

doi: https://doi.org/10.1371/journal.pone.0015798.g006