Haemophilus influenzae LicB contributes to lung damage in an aged mice co-infection model

Jessica Bondy1, Sofya Osharovich1, Julie Storm1

  • 1West Chester University of Pennsylvania, Department of Biology, 750 South Church Street, West Chester, PA 19383, USA.

Microbial Pathogenesis
|November 2, 2015
PubMed

Insights

The licB gene in Haemophilus influenzae is a virulence factor, contributing to lung damage in aged mice during co-infection. Deleting licB reduced lung tissue damage, suggesting its role in bacterial adherence and pathogenesis.

Area of Science:

  • Microbiology
  • Immunology
  • Pathogenesis

Background:

  • Phosphorylcholine (ChoP) decoration of lipopolysaccharides (LPS) is a key virulence factor for *Haemophilus influenzae* ( *H. influenzae*).
  • The *lic1* operon, including the choline transporter gene *licB*, facilitates ChoP incorporation onto LPS.
  • Understanding *licB*'s role is crucial for developing targeted therapies against *H. influenzae* infections, particularly in vulnerable populations.

Purpose of the Study:

  • To investigate the role of the *licB* gene in the pathogenesis of *H. influenzae* infection in an aged mice model.
  • To evaluate the impact of *licB* deletion on virulence and host response during co-infection with influenza A virus.

Main Methods:

  • Development of a co-infection model using influenza A virus and *H. influenzae* in aged mice.
  • Comparison of virulence between wild-type *H. influenzae* and a *licB* mutant strain.
  • Assessment of host response, including weight loss and lung tissue damage.

Main Results:

  • Co-infection with a low dose of *H. influenzae* proved lethal in aged mice.
  • Mice infected with the *licB* mutant exhibited significantly reduced lung tissue damage compared to those infected with the wild-type strain.
  • No significant difference in weight loss was observed between groups, but *licB* deletion attenuated virulence.

Conclusions:

  • The *licB* gene is a significant virulence factor for *H. influenzae* in the aged mouse lung, likely mediated by ChoP expression and enhanced host cell binding.
  • The co-infection model serves as a valuable system for studying *H. influenzae* pathogenesis in aged mice.
  • Aged mice showed detrimental effects from secondary bacterial infection, unlike mature mice exhibiting immune protection.

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