Dot/Icm type IVB secretion system requirements for Coxiella burnetii growth in human macrophages

Paul A Beare1, Stacey D Gilk, Charles L Larson

  • 1Coxiella Pathogenesis Section, Laboratory of Intracellular Parasites, Rocky Mountain Laboratories, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Hamilton, Montana, USA.

Mbio
|August 25, 2011
PubMed

Insights

Coxiella burnetii requires its Dot/Icm type IVB secretion system (T4BSS) for replication in human macrophages. This system is essential for parasitophorous vacuole development and bacterial growth during Q fever infection.

Area of Science:

  • Microbiology
  • Cell Biology
  • Infectious Diseases

Background:

  • Q fever pathogenesis involves Coxiella burnetii replication within a specialized vacuole in host phagocytes.
  • The Dot/Icm type IVB secretion system (T4BSS) is implicated in modulating host cell functions and vacuole biogenesis.

Purpose of the Study:

  • To investigate the role of Dot/Icm T4BSS function in Coxiella burnetii parasitism of human macrophages.
  • To determine the specific requirements for Dot/Icm activity during intracellular infection.

Main Methods:

  • Utilized a Himar1 transposon-inactivated C. burnetii icmD mutant strain.
  • Infected human THP-1 macrophage-like cells to assess bacterial replication, PV development, and host cell apoptosis.
  • Complemented the mutant strain with specific dot/icm genes and analyzed trans-complementation.

Main Results:

  • The icmD::Tn mutant exhibited defects in T4BSS substrate secretion, bacterial replication, PV formation, and apoptosis protection.
  • Complementation with icmD, -J, and -B restored T4BSS function and intracellular growth, indicating a polar effect of the transposon.
  • The mutant replicated in PVs generated in trans by wild-type bacteria or by Leishmania amazonensis, demonstrating metabolic flexibility.

Conclusions:

  • Dot/Icm T4BSS function is essential for productive Coxiella burnetii infection of human macrophages.
  • The study highlights the critical role of T4BSS in bacterial intracellular survival and pathogenesis.
  • Coxiella burnetii demonstrates metabolic flexibility, utilizing host or co-infecting pathogen-derived factors for intracellular replication under specific conditions.