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A family of fibrinogen-binding MSCRAMMs from Enterococcus faecalis
Jouko Sillanpää1,2,3, Sreedhar R Nallapareddy1,2, Janeu Houston3
1Center for the Study of Emerging and Re-emerging Pathogens, University of Texas Medical School, Houston, TX, USA.
Abstract:
We report that three (EF0089, EF2505 and EF1896, renamed here Fss1, Fss2 and Fss3, respectively, for Enterococcus faecalis surface protein) of the recently predicted MSCRAMMs (microbial surface components recognizing adhesive matrix molecules) in E. faecalis strain V583 bind fibrinogen (Fg). Despite an absence of extensive primary sequence homology, the three proteins appear to be related structurally. Within the N-terminal regions of the three enterococcal proteins, we identified pairs of putative IgG-like modules with a high degree of predicted structural similarity to the Fg-binding N2 and N3 domains of the staphylococcal MSCRAMMs ClfA and SdrG. A second N2N3-like segment was predicted in Fss1. Far-UV circular dichroism spectroscopy revealed that all four predicted N2N3-like regions are composed mainly of beta-sheets with only a minor proportion of alpha-helices, which is characteristic of Ig-like folded domains. Three of the four identified enterococcal N2N3-like regions showed potent dose-dependent binding to Fg. However, the specificity of the Fg-binding MSCRAMMs differs, as indicated by far-Western blots, which showed that recombinant segments of the MSCRAMMs bound different Fg polypeptide chains. Enterococci grown in serum-supplemented broth adhere to Fg-coated surfaces, and inactivation in strain OG1RF of the gene encoding Fss2 resulted in reduced adherence, whilst complementation of the mutant restored full Fg adherence. Thus, E. faecalis contains a family of MSCRAMMs that structurally and functionally resemble the Fg-binding MSCRAMMs of staphylococci.
Insights
Three Enterococcus faecalis surface proteins (Fss1, Fss2, Fss3) bind fibrinogen, structurally resembling staphylococcal proteins. This binding is crucial for bacterial adherence to host surfaces.
Area of Science:
- Microbiology
- Molecular Biology
- Structural Biology
Background:
- Enterococcus faecalis is an opportunistic pathogen.
- Microbial Surface Components Recognizing Adhesive Matrix Molecules (MSCRAMMs) mediate bacterial adhesion.
- Fibrinogen (Fg) is a key host matrix molecule involved in bacterial colonization.
Purpose of the Study:
- To identify and characterize fibrinogen-binding MSCRAMMs in E. faecalis.
- To investigate the structural and functional similarities between E. faecalis and staphylococcal Fg-binding MSCRAMMs.
Main Methods:
- Bioinformatic prediction of MSCRAMMs.
- Far-UV circular dichroism spectroscopy to analyze protein secondary structure.
- Far-Western blots to assess binding specificity to Fg polypeptide chains.
- Gene inactivation and complementation experiments to evaluate the role of Fss2 in bacterial adherence.
Main Results:
- Three E. faecalis proteins (Fss1, Fss2, Fss3) were identified as fibrinogen binders.
- These proteins possess putative IgG-like N-terminal modules structurally similar to staphylococcal Fg-binding MSCRAMMs.
- Fss2 inactivation significantly reduced E. faecalis adherence to Fg-coated surfaces.
Conclusions:
- E. faecalis possesses a family of fibrinogen-binding MSCRAMMs.
- These MSCRAMMs share structural and functional resemblance with those found in staphylococci.
- These proteins play a significant role in the adherence of E. faecalis to host tissues.
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