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Phenotypic effect of isogenic uspA1 and uspA2 mutations on Moraxella catarrhalis 035E
C Aebi1, E R Lafontaine, L D Cope
1Department of Microbiology, University of Texas Southwestern Medical Center, Dallas, Texas 75235-9048, USA.
Abstract:
The UspA surface antigen of Moraxella catarrhalis was recently shown to be comprised of two different proteins (UspA1 and UspA2) which share an internal region containing 140 amino acids with 93% identity (C. Aebi, I. Maciver, J. L. Latimer, L. D. Cope, M. K. Stevens, S. E. Thomas, G. H. McCracken, Jr., and E. J. Hansen, Infect. Immun. 65:4367-4377, 1997). Isogenic uspA1, uspA2, and uspA1 uspA2 mutants were tested in a number of in vitro systems to determine what effect these mutations, either individually or together, might exert on the phenotype of M. catarrhalis 035E. Monoclonal antibodies specific for UspA1 or UspA2 were used in an indirect antibody accessibility assay to prove that both of these proteins were expressed on the surface of M. catarrhalis. All three mutants grew in vitro at the same rate and did not exhibit autoagglutination or hemagglutination properties that were detectably different from those of the wild-type parent strain. When tested for the ability to adhere to human epithelial cells, the wild-type parent strain and the uspA2 mutant readily attached to Chang conjunctival cells. In contrast, the uspA1 mutant and the uspA1 uspA2 double mutant both attached to these epithelial cells at a level nearly 2 orders of magnitude lower than that obtained with the wild-type parent strain, a result which suggested that expression of UspA1 by M. catarrhalis is essential for attachment to these epithelial cells. Both the wild-type parent strain and the uspA1 mutant were resistant to the bactericidal activity of normal human serum, whereas the uspA2 mutant and the uspA1 uspA2 double mutant were readily killed by this serum. This latter result indicated that the presence of UspA2 is essential for expression of serum resistance by M. catarrhalis.
Insights
Moraxella catarrhalis surface proteins UspA1 and UspA2 play distinct roles. UspA1 is crucial for bacterial attachment to epithelial cells, while UspA2 is essential for resistance to normal human serum.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Immunology
Background:
- Moraxella catarrhalis is a significant human pathogen.
- The UspA surface antigen is a key virulence factor.
- UspA comprises two distinct proteins, UspA1 and UspA2.
Purpose of the Study:
- To investigate the individual and combined roles of UspA1 and UspA2 in M. catarrhalis phenotype.
- To determine the contribution of UspA1 and UspA2 to bacterial adherence and serum resistance.
Main Methods:
- Construction and in vitro testing of isogenic uspA1, uspA2, and uspA1 uspA2 mutants.
- Indirect antibody accessibility assays using monoclonal antibodies specific for UspA1 or UspA2.
- Assays for bacterial adherence to human epithelial cells and resistance to normal human serum.
Main Results:
- UspA1 expression is essential for M. catarrhalis attachment to epithelial cells.
- UspA2 expression is essential for resistance to normal human serum bactericidal activity.
- Mutations in uspA1, uspA2, or both did not affect bacterial growth rate, autoagglutination, or hemagglutination.
Conclusions:
- UspA1 and UspA2 are distinct surface proteins with non-overlapping functions in M. catarrhalis virulence.
- UspA1 mediates adherence to host epithelial cells.
- UspA2 confers resistance to complement-mediated killing by normal human serum.