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Platelet Adhesion and Aggregation Under Flow using Microfluidic Flow Cells
Published on: October 26, 2009
Clumping factor A mediates binding of Staphylococcus aureus to human platelets
I R Siboo1, A L Cheung, A S Bayer
1Veterans Affairs Medical Center and University of California San Francisco, San Francisco, California, USA.
Abstract:
The direct binding of bacteria to platelets may be an important virulence mechanism in the pathogenesis of infective endocarditis. We have previously described Staphylococcus aureus strain PS12, a Tn551-derived mutant of strain ISP479, with reduced ability to bind human platelets in vitro. When tested in an animal model of endocarditis, the PS12 strain was less virulent than its parental strain, as measured by bacterial densities in endocardial vegetations and incidence of systemic embolization. We have now characterized the gene disrupted in PS12 and its function in platelet binding. DNA sequencing, Southern blotting, and PCR analysis indicate that PS12 contained two Tn551 insertions within the clumping factor A (ClfA) locus (clfA). The first copy was upstream from the clfA start codon and appeared to have no effect on ClfA production. The second insertion was within the region encoding the serine aspartate repeat of ClfA and resulted in the production of a truncated ClfA protein that was secreted from the cell. A purified, recombinant form of the ClfA A region, encompassing amino acids 40 through 559, significantly reduced the binding of ISP479C to human platelets by 44% (P = 0.0001). Immunoprecipitation of recombinant ClfA that had been incubated with solubilized platelet membranes coprecipitated a 118-kDa platelet membrane protein. This protein does not appear to be glycoprotein IIb. These results indicate that platelet binding by S. aureus is mediated in part by the direct binding of ClfA to a novel 118-kDa platelet membrane receptor.
Insights
Staphylococcus aureus binding to platelets is key in infective endocarditis. The clumping factor A (ClfA) protein mediates this interaction by binding to a novel 118-kDa platelet receptor, impacting bacterial virulence.
Area of Science:
- Microbiology
- Immunology
- Infectious Diseases
Background:
- Bacterial adherence to platelets is a critical virulence factor in infective endocarditis pathogenesis.
- Staphylococcus aureus strain PS12, a mutant with reduced platelet binding, exhibits lower virulence in animal models.
Purpose of the Study:
- To characterize the gene disrupted in S. aureus strain PS12 and elucidate its role in platelet binding.
- To identify the specific bacterial and host factors involved in S. aureus-platelet interactions.
Main Methods:
- Genetic analysis (DNA sequencing, Southern blotting, PCR) to identify Tn551 insertion sites within the clumping factor A (ClfA) locus.
- Production and purification of recombinant ClfA A region for in vitro binding assays.
- Immunoprecipitation assays to identify platelet binding partners of ClfA.
Main Results:
- Tn551 insertions in PS12 disrupted the clfA gene, leading to a truncated, secreted ClfA protein.
- Recombinant ClfA A region significantly inhibited S. aureus binding to human platelets.
- ClfA directly bound to a novel 118-kDa platelet membrane protein, distinct from glycoprotein IIb.
Conclusions:
- The clumping factor A (ClfA) of Staphylococcus aureus is a key mediator of direct platelet binding.
- This interaction involves a novel 118-kDa platelet membrane receptor, contributing to S. aureus virulence in infective endocarditis.
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