Immunomodulatory effects of Yersinia pestis lipopolysaccharides on human macrophages

Motohiro Matsuura1, Hideyuki Takahashi, Haruo Watanabe

  • 1Department of Infection and Immunity, School of Medicine, Jichi Medical University, 3311-1 Yakushiji, Shimotsuke, Tochigi 329-0498, Japan. mmatsuur@jichi.ac.jp

Insights

Yersinia pestis lipopolysaccharide (LPS) activity differs based on growth temperature. LPS-37, lacking hexa-acylated lipid A, inhibits Toll-like receptor 4 (TLR4) inflammatory responses, allowing Y. pestis to evade immune detection.

Area of Science:

  • Immunology
  • Microbiology
  • Molecular Biology

Background:

  • Lipopolysaccharide (LPS) from Gram-negative bacteria typically triggers inflammatory responses via Toll-like receptor 4 (TLR4).
  • Yersinia pestis, the causative agent of plague, has LPS with varying structures depending on growth conditions.

Purpose of the Study:

  • To investigate the immunomodulatory activity of Yersinia pestis LPS (LPS-27 and LPS-37) and their role in evading host defense mechanisms.
  • To determine the contribution of bacterial-bound LPS to immune stimulation.

Main Methods:

  • Purification and characterization of LPS from Y. pestis grown at 27°C (LPS-27) and 37°C (LPS-37).
  • Assessment of inflammatory responses in human U937 cells using TLR4 activation assays.
  • Preparation and testing of formalin-killed Y. pestis (FKB-27 and FKB-37) to evaluate bacterial-bound LPS activity.
  • Inhibition studies using anti-TLR4 and anti-TLR2 antibodies, and LPS-37.

Main Results:

  • LPS-27, containing hexa-acylated lipid A, potently stimulated TLR4-mediated inflammation.
  • LPS-37, lacking hexa-acylated lipid A, exhibited strong antagonistic activity against TLR4 activation.
  • Bacterial-bound LPS-27 in FKB-27 strongly induced inflammation, suppressed by LPS-37 and anti-TLR4 antibodies.
  • FKB-37 did not induce significant inflammatory responses.

Conclusions:

  • Y. pestis utilizes LPS-37 to evade the TLR4-based innate immune system during infection.
  • The absence of hexa-acylated lipid A in LPS-37 is crucial for its antagonistic function.
  • Bacterial-bound LPS-37 allows Y. pestis to establish infection without activating host defense pathways.