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An oxygen-induced but protein F-independent fibronectin-binding pathway in Streptococcus pyogenes
1Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, Missouri 63110-1093, USA.
Abstract:
Protein F is an important fibronectin-binding adhesin of Streptococcus pyogenes (group A streptococcus). However, all previous analyses of protein F have been conducted in a mutant strain which expresses protein F under anaerobic conditions nonpermissive for expression in other strains. In this study, we have examined the fibronectin-binding properties of several protein F-deficient mutants cultured under aerobic conditions and have identified a second pathway for binding fibronectin. Unlike the case with protein F, exposure to an aerobic environment does not induce transcription of a new gene product. Rather, O2 is apparently required for the modification of a protease-resistant cell surface component into a binding-component form. Modification occurred preferentially at a pH of 6.0 or less, and the binding of the modified component to fibronectin required Zn2+. The oxidizing agent Fe(CN)6 could be substituted for O2 and stimulated expression of binding activity under O2-limiting conditions. Streptococcal fibronectin binding mediated by this pathway but not by protein F could be inhibited by laminin and by streptococcal lipoteichoic acid, a molecule previously implicated as the streptococcal adhesin for fibronectin. The non-protein F-binding activity could also substantially enhance the binding of the organism for fibronectin. The non-protein F-binding activity could also substantially enhance the binding of the organism to basement membrane. By using differential inhibition, analyses of binding to non-protein F mutant strains demonstrated that the total level of fibronectin bound under aerobic conditions reflects contributions from both pathways. Because of its dependence on Zn2+, an oxidant, and pH, this binding activity has been designated the ZOP binding pathway.
Insights
Streptococcus pyogenes utilizes a novel ZOP pathway for fibronectin binding, distinct from Protein F. This pathway requires oxygen, zinc, and acidic pH for activation, enhancing bacterial adhesion.
Area of Science:
- Microbiology
- Molecular Biology
- Biochemistry
Background:
- Protein F is a key fibronectin-binding adhesin in Streptococcus pyogenes.
- Previous studies on Protein F were limited to anaerobic conditions, not representative of natural environments.
Purpose of the Study:
- To investigate fibronectin-binding mechanisms in Streptococcus pyogenes under aerobic conditions.
- To identify and characterize alternative fibronectin-binding pathways beyond Protein F.
Main Methods:
- Analysis of protein F-deficient mutants under aerobic conditions.
- Investigating the role of oxygen, pH, and metal ions (Zn2+) in fibronectin binding.
- Using differential inhibition assays with laminin and lipoteichoic acid.
Main Results:
- A second, oxygen-dependent fibronectin-binding pathway (ZOP pathway) was identified.
- This pathway involves modification of a protease-resistant component, requiring acidic pH (≤6.0) and Zn2+.
- The ZOP pathway's activity is enhanced by oxidants like Fe(CN)6 and can be inhibited by laminin and lipoteichoic acid.
- This pathway significantly enhances bacterial binding to fibronectin and basement membranes.
Conclusions:
- Streptococcus pyogenes employs at least two distinct pathways for fibronectin adhesion.
- The newly discovered ZOP pathway is crucial for aerobic fibronectin binding and bacterial adherence.
- Understanding these pathways offers insights into streptococcal pathogenesis and potential therapeutic targets.