Genomic, Transcriptomic, and Phenotypic Analyses of Neisseria meningitidis Isolates from Disease Patients and Their

Xiaoyun Ren1, David A Eccles2, Gabrielle A Greig1,3

  • 1Invasive Pathogens Laboratory, Institute of Environmental Science and Research, Porirua, New Zealand.

Msystems
|November 21, 2017
PubMed

Insights

Neisseria meningitidis causes disease, but factors determining virulence remain unclear. Detailed analysis revealed genome and gene expression differences between carriage and disease strains, including pili loss linked to reduced inflammation.

Area of Science:

  • Microbiology and Immunology
  • Genomics and Molecular Biology

Background:

  • Neisseria meningitidis (meningococcus) causes severe meningococcal disease, with virulence factors poorly understood.
  • Meningococci are common nasopharyngeal commensals, but invasive disease is rare, suggesting specific adaptations.
  • A protracted epidemic in New Zealand provided an opportunity to study carriage and disease isolates.

Purpose of the Study:

  • To identify differences between commensal Neisseria meningitidis isolates from healthy carriers and those causing invasive disease.
  • To investigate genomic, transcriptional, and host interaction variations between carriage and disease strains.
  • To explore the role of specific bacterial factors, such as type IV pili, in meningococcal virulence.

Main Methods:

  • Household carriage study involving swabbing contacts of meningococcal disease patients.
  • Detailed genomic and transcriptional analyses of closely related carriage and disease isolates.
  • Co-culture experiments with human bronchial epithelial cells to assess host-pathogen interactions.

Main Results:

  • Identified multiple genome variants and transcriptional differences between isolates, despite indistinguishable laboratory typing.
  • Discovered two novel phase-variable genes.
  • Found that loss of type IV pili in carriage strains correlated with reduced tumor necrosis factor alpha (TNF-α) secretion upon epithelial cell co-culture, suggesting immune evasion.

Conclusions:

  • Despite similar laboratory typing, Neisseria meningitidis carriage and disease isolates exhibit significant genomic and transcriptional divergence.
  • Loss of type IV pili in carriage strains may facilitate immune evasion by reducing pro-inflammatory responses.
  • Metabolic pathways, such as sulfate assimilation, may also differ between carriage and disease isolates, contributing to virulence.