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Published on: April 28, 2014
CcpA is important for growth and virulence of Enterococcus faecium
Sudha R Somarajan1, Jung H Roh1, Kavindra V Singh2
1Division of Infectious Diseases, Department of Internal Medicine, University of Texas Medical School at Houston, Houston, Texas, USA.
Abstract:
The collagen adhesin Acm was the first virulence determinant reported to be important for the pathogenesis of Enterococcus faecium in a rat infective endocarditis model. We had previously reported that there was a slight growth delay associated with acm allelic replacement (cat) mutant strain TX6051 used in that study. Recently, we generated a nonpolar markerless acm deletion mutant and did not observe a delay in growth. We therefore performed comparative genome sequence analysis of wild-type strain TX82 and TX6051 and found a single mutation, a nonsense mutation in the ccpA gene of TX6051. After correcting this mutation, the growth defect of TX6051 was abolished, implicating a role for CcpA in the growth of E. faecium. To confirm this, we created a ccpA deletion mutant of TX82, which also exhibited a slight delay in growth. Furthermore, the ccpA deletion mutant was attenuated (P = 0.0024) in a mixed-inoculum (TX82 plus TX82 ΔccpA) rat endocarditis model and also in an in vitro competitive growth assay; a ccpA-complemented strain showed neither reduced growth nor reduced virulence. We also found attenuation in the endocarditis model with the new acm deletion mutant although not as great as that previously observed with TX6051 carrying the ccpA mutation. Taken together, our data confirm the role of Acm in the pathogenesis of endocarditis. We also show that CcpA affects the growth of E. faecium, that an intact ccpA gene is important for full virulence, and that a ccpA mutation was partly responsible for the highly attenuated phenotype of TX6051.
Insights
The collagen adhesin Acm is vital for Enterococcus faecium pathogenesis. A mutation in the CcpA gene, not Acm, caused previous growth defects and reduced virulence in E. faecium.
Area of Science:
- Microbiology
- Infectious Diseases
- Bacterial Pathogenesis
Background:
- The collagen adhesin Acm was previously identified as a key virulence factor for Enterococcus faecium in a rat infective endocarditis model.
- A growth delay was observed in a previously studied acm mutant (TX6051), prompting further investigation into its genetic basis.
Purpose of the Study:
- To elucidate the cause of the growth defect observed in the TX6051 Enterococcus faecium strain.
- To investigate the role of the CcpA protein in E. faecium growth and virulence.
- To re-evaluate the contribution of the collagen adhesin Acm to E. faecium pathogenesis.
Main Methods:
- Comparative genome sequencing of wild-type and mutant E. faecium strains.
- Genetic manipulation including markerless deletion and complementation of genes.
- In vitro competitive growth assays and in vivo rat infective endocarditis models.
Main Results:
- A nonsense mutation in the ccpA gene was identified as the cause of the growth defect in strain TX6051.
- Deletion mutants of ccpA in E. faecium exhibited delayed growth and attenuated virulence in both in vitro and in vivo models.
- A newly generated acm deletion mutant showed attenuation in the endocarditis model, confirming Acm's role in pathogenesis.
Conclusions:
- The CcpA protein significantly influences the growth of Enterococcus faecium.
- An intact ccpA gene is crucial for the full virulence of E. faecium.
- The previously observed attenuated phenotype of strain TX6051 was partly due to a mutation in ccpA, not solely the acm mutation.
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