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Streptococcal cysteine proteinase releases biologically active fragments of streptococcal surface proteins
Abstract:
Streptococcus pyogenes are important pathogenic bacteria which produce an extracellular cysteine proteinase contributing to their virulence and pathogenicity. S. pyogenes also express surface molecules, M proteins, that are major virulence determinants due to their antiphagocytic property. In the present work live S. pyogenes bacteria of the M1 serotype were incubated with purified cysteine proteinase. Several peptides were solubilized, and analysis of their protein-binding properties and amino acid sequences revealed two internal fibrinogen-binding fragments of M1 protein (17 and 21 kDa, respectively), and a 36-kDa IgG-binding NH2-terminal fragment of protein H, an IgGFc-binding surface molecule. M protein also plays a role in streptococcal adherence, and removal of this and other surface proteins could promote bacterial dissemination, whereas the generation of soluble complexes between immunoglobulins and immunoglobulin-binding streptococcal surface proteins could be an etiological factor in the development of glomerulonephritis and rheumatic fever. Thus, in these serious complications to S. pyogenes infections immune complexes are found in affected organs. The cysteine proteinase also solubilized a 116-kDa internal fragment of C5a peptidase, another streptococcal surface protein. Activation of the complement system generates C5a, a peptide stimulating leukocyte chemotaxis. C5a-mediated granulocyte migration was blocked by the 116-kDa fragment. This mechanism, by which phagocytes could be prevented from reaching the site of infection, may also contribute to the pathogenicity and virulence of S. pyogenes.
Insights
Streptococcus pyogenes cysteine proteinase degrades key surface proteins, including M protein and C5a peptidase. This process generates fragments that may hinder immune responses, potentially increasing bacterial virulence and contributing to disease.
Area of Science:
- Microbiology
- Immunology
- Biochemistry
Background:
- Streptococcus pyogenes is a significant pathogen.
- Virulence factors include cysteine proteinase and M proteins.
- These factors contribute to pathogenicity and immune evasion.
Purpose of the Study:
- Investigate the effects of S. pyogenes cysteine proteinase on bacterial surface proteins.
- Identify and characterize protein fragments generated by the enzyme.
- Elucidate the role of these fragments in virulence and host immune response.
Main Methods:
- Incubation of live M1 serotype S. pyogenes with purified cysteine proteinase.
- Solubilization and analysis of resulting peptides.
- Determination of protein-binding properties and amino acid sequences.
Main Results:
- Identified fibrinogen-binding fragments (17 and 21 kDa) of M1 protein.
- Characterized a 36-kDa IgG-binding fragment of protein H.
- Solubilized a 116-kDa fragment of C5a peptidase that blocks C5a-mediated granulocyte migration.
Conclusions:
- S. pyogenes cysteine proteinase generates fragments that bind host proteins like fibrinogen and IgG.
- These fragments may interfere with immune cell recruitment and function.
- The enzymatic degradation of surface proteins contributes to S. pyogenes virulence and pathogenesis.