M-like proteins of Streptococcus dysgalactiae
J Vasi1, L Frykberg, L E Carlsson
1Department of Microbiology, Swedish University of Agricultural Sciences, S-750 07 Uppsala, Sweden.
Abstract:
Streptococcus dysgalactiae is one of the most important bacterial species isolated from bovine mastitis. To identify potential virulence factors of this species we prepared chromosomal DNA from strain 8215 and constructed a phage display library. By affinity selection of the library against fibrinogen (Fg), we isolated and characterized a gene, called demA, encoding a protein with the molecular mass of approximately 58 kDa, called DemA, displaying both plasma protein binding properties and sequence similarities with the M and M-like proteins of other streptococcal species. Purified recombinant DemA protein was found to completely inhibit Fg-binding to cells of S. dysgalactiae. A continued sequence analysis revealed that the demA gene was preceded by an open reading frame (dmgA) coding for a putative protein, called DmgA, with high similarities to the Mga proteins of Streptococcus pyogenes. By additional cloning, the corresponding dmgA and demA genes from another strain, called Epi9, were isolated and analyzed. These genes, called dmgB and demB, respectively, revealed a high degree of similarity to the corresponding genes in strain 8215. Increased binding of Fg by cells of strain Epi9, grown in an atmosphere with 10% CO(2), was correlated to an enhanced transcription of the demB gene as shown in a Northern blot. Strain 8215 did not respond to CO(2), which could be explained by a nonfunctional dmgA gene due to insertion of an insertion sequence element. Based on sequence similarities of the described proteins to Mga, M, and M-like proteins and the response to elevated level of CO(2), we suggest that the dmg and dem genes are members of a regulon similar to the described mga regulon in S. pyogenes, which encodes several virulence factors in this species.
Insights
Researchers identified a novel fibrinogen-binding protein, DemA, in Streptococcus dysgalactiae, a key cause of bovine mastitis. The study suggests dmg and dem genes form a virulence regulon, similar to Streptococcus pyogenes' mga regulon.
Area of Science:
- Bacteriology
- Molecular Biology
- Veterinary Science
Background:
- Streptococcus dysgalactiae is a significant pathogen in bovine mastitis.
- Understanding its virulence factors is crucial for disease control.
Purpose of the Study:
- To identify and characterize novel virulence factors of Streptococcus dysgalactiae.
- To investigate the genetic regulation of these factors.
Main Methods:
- Construction of a phage display library against fibrinogen.
- Gene isolation, sequencing, and protein expression (DemA).
- Northern blot analysis to assess gene transcription under varying conditions.
Main Results:
- Isolation and characterization of the demA gene encoding the fibrinogen-binding protein DemA.
- DemA inhibits fibrinogen binding to S. dysgalactiae cells.
- Identification of dmgA and demA homologs (dmgB and demB) in another strain.
- Correlation between increased CO(2) levels, enhanced demB transcription, and fibrinogen binding in strain Epi9.
- Potential non-functional dmgA in strain 8215 due to insertion sequence element.
Conclusions:
- The dmg and dem genes in S. dysgalactiae likely constitute a regulon analogous to the mga regulon in S. pyogenes.
- This regulon potentially controls multiple virulence factors in S. dysgalactiae.
- Environmental factors like CO(2) may influence the expression of these virulence genes.
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