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Lethal infection by Bordetella pertussis mutants in the infant mouse model
1Department of Microbiology and Immunology, Medical College of Virginia, Richmond 23298.
Abstract:
Different aspects of lethal infection of infant mice with Bordetella pertussis were examined. Mutants deficient in vir-regulated genes were tested for the ability to cause a lethal infection in the infant mouse model. Adenylate cyclase toxin-hemolysin and pertussis toxin were required to cause a lethal infection at low doses. Mixed infection caused by challenging the mice with an equal number of pertussis toxin and adenylate cyclase toxin-hemolysin mutants at a dose at which neither alone was lethal was also unable to cause a lethal infection. Production of the filamentous hemagglutinin and the dermonecrotic toxin was not required to cause a lethal infection. Nine other mutants in vir-regulated genes whose phenotypes have yet to be determined were also tested. Only two of these mutants were impaired in the ability to cause a lethal infection. Expression of fimbriae does not appear to affect the dose required to cause a lethal infection; however, fimbrial expression was correlated with the later stages of a nonlethal, persistent infection. Growth of the bacteria in MgSO4, a condition which reversibly suppresses expression of the genes required for virulence, did not alter the ability of the bacteria to cause a lethal infection. Auxotrophic mutants deficient in leucine biosynthesis were as virulent as the parental strain; however, mutants deficient in methionine biosynthesis were less virulent. A B. parapertussis strain was much less effective in promoting a lethal infection than any of the wild-type B. pertussis strains examined. A persistent infection in the lungs was observed for weeks after challenge for mice given a sublethal dose of B. pertussis, and transmission from infected infants to the mother was never observed.
Insights
Adenylate cyclase toxin-hemolysin and pertussis toxin are crucial for Bordetella pertussis lethal infections in infant mice. Other virulence factors like filamentous hemagglutinin and dermonecrotic toxin are not essential for lethality.
Area of Science:
- Microbiology
- Infectious Diseases
- Bacterial Pathogenesis
Background:
- Bordetella pertussis causes whooping cough, a significant global health concern.
- Understanding the specific virulence factors contributing to lethal infections is critical for developing effective vaccines and treatments.
Purpose of the Study:
- To identify the key virulence factors of Bordetella pertussis essential for causing lethal infections in a neonatal mouse model.
- To investigate the roles of specific vir-regulated genes and toxins in B. pertussis pathogenesis.
Main Methods:
- Utilized a neonatal mouse model to assess the lethality of various B. pertussis mutants.
- Compared the virulence of mutants deficient in adenylate cyclase toxin-hemolysin, pertussis toxin, filamentous hemagglutinin, dermonecrotic toxin, and other vir-regulated genes.
- Examined the impact of fimbrial expression and bacterial growth conditions on infection lethality.
Main Results:
- Adenylate cyclase toxin-hemolysin and pertussis toxin were indispensable for causing lethal infections at low bacterial doses.
- Mutants lacking these two toxins were unable to cause lethal infections even in mixed infections.
- Filamentous hemagglutinin and dermonecrotic toxin production were not required for lethal outcomes.
- Fimbrial expression correlated with persistent, nonlethal infections, not acute lethality.
- Bordetella parapertussis exhibited significantly lower virulence compared to B. pertussis.
Conclusions:
- Adenylate cyclase toxin-hemolysin and pertussis toxin are the primary determinants of Bordetella pertussis lethality in infant mice.
- Virulence factor requirements can differ between lethal and persistent infection stages.
- B. parapertussis is less virulent than B. pertussis in this model.