Plasminogen-binding activity of enolase in the opportunistic pathogen Pneumocystis carinii
1Department of Pathology, University of Cincinnati, Ohio 45267-0560, USA
Abstract:
The glycolytic enzyme enolase is one of the most abundant proteins expressed in fungi and has been shown to be an immunodominant cell-wall-associated antigen of the pathogenic fungus, Candida albicans. Enolase has also been found on the surface of some mammalian cells where it functions as a plasminogen-binding motif and facilitator of plasminogen activation to plasmin. To investigate the immunogenicity of enolase in the opportunistic pathogen, Pneumocystis carinii, the genomic and complementary DNA (cDNA) enolase were cloned and characterized. The predicted protein comprises 433 amino-acid residues and shows extensive homology to other fungal enolases, including those of C. albicans (76%), Aspergillus oryzae (79%) and Saccharomyces cerevisiae (77%). The purified recombinant P. carinii enolase was immunogenic, and may be an important antigen and indicator of P. carinii infection. The active site and conformation metal ion-binding site residues necessary for dimerization and enzyme function are conserved in the predicted P. carinii enolase protein. Enolase of P. carinii is unique among the fungal enolases in that it possesses a catalytic carboxyl-terminal lysyl residue that was necessary and sufficient for the plasminogen-binding activity of the enolase of P. carinii. The activity of the plasminogen binding suggests its involvement in the local regulation of fibrinolysis within the alveolar space.
Insights
Pneumocystis carinii enolase is an immunogenic protein and potential diagnostic indicator for infection. Its unique plasminogen-binding activity may regulate local fibrinolysis in the lungs.
Area of Science:
- Mycology
- Immunology
- Biochemistry
Background:
- Enolase is a highly abundant fungal protein and a known antigen in Candida albicans.
- Mammalian cell enolase binds plasminogen, facilitating its activation to plasmin.
- The role of enolase in Pneumocystis carinii infections was previously uncharacterized.
Purpose of the Study:
- To investigate the immunogenicity of Pneumocystis carinii enolase.
- To characterize the Pneumocystis carinii enolase protein and its functional properties.
Main Methods:
- Cloning and characterization of Pneumocystis carinii enolase genomic and complementary DNA.
- Purification and immunogenicity testing of recombinant Pneumocystis carinii enolase.
- Analysis of conserved active site residues and unique carboxyl-terminal lysyl residue.
Main Results:
- Pneumocystis carinii enolase shares extensive homology with other fungal enolases.
- Recombinant Pneumocystis carinii enolase demonstrated immunogenicity.
- A unique catalytic carboxyl-terminal lysyl residue was identified, essential for plasminogen binding.
Conclusions:
- Pneumocystis carinii enolase is an immunogenic antigen and a potential indicator for P. carinii infection.
- Conserved active site residues suggest retained enzymatic function.
- The unique plasminogen-binding activity suggests a role in regulating local fibrinolysis within the alveolar space.
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