Outer membrane protein expression profile in Helicobacter pylori clinical isolates

Stefan Odenbreit1, Kirstin Swoboda, Iris Barwig

  • 1Max von Pettenkofer Institute for Hygiene and Medical Microbiology, Ludwig-Maximilians-University Munich, D-80336 Munich, Germany.

Insights

Helicobacter pylori outer membrane protein (OMP) expression varies greatly among patients, suggesting adaptation to individual hosts. Essential OMPs AlpA and AlpB are always produced, while others show diverse expression patterns.

Area of Science:

  • Microbiology
  • Infectious Diseases
  • Molecular Biology

Background:

  • Helicobacter pylori, a gastric pathogen, possesses numerous outer membrane proteins (OMPs) with poorly understood roles in infection.
  • The Hop and Hor protein families comprise 33 members, including known adhesins like AlpA, AlpB, BabA, SabA, and HopZ.

Purpose of the Study:

  • To investigate the expression profiles of eight specific outer membrane protein genes (omp) in 200 clinical isolates of H. pylori.
  • To correlate OMP expression with host factors and interleukin-8 (IL-8) production.

Main Methods:

  • Analysis of omp gene expression (alpA, alpB, babA, babB, babC, sabA, hopM, oipA) in 200 patient-derived H. pylori isolates.
  • Detection of OMP production and assessment of BabA/SabA binding capabilities.
  • Evaluation of IL-8 expression in gastric cells in relation to the cag pathogenicity island, OipA, and CagA presence.

Main Results:

  • AlpA and AlpB were ubiquitously expressed, indicating essential functions.
  • Expression of other OMPs varied significantly (35-73%), suggesting adaptation to specific hosts or niches.
  • BabA and SabA were produced in a subset of isolates (11% and 5%, respectively) but did not always mediate substrate binding.
  • IL-8 production was dependent on the cag pathogenicity island, with OipA enhancing IL-8 levels.
  • CagA presence correlated with BabA and OipA expression.

Conclusions:

  • H. pylori exhibits remarkably diverse omp expression profiles in clinical isolates.
  • This diversity likely reflects adaptive pressures related to adhesion, varying across hosts and over time within a single host.

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