Borrelial phosphomannose isomerase as a cell surface localized protein that retains enzymatic activity and promotes

Shraboni Dutta1, Vipin S Rana1, Brian T Backstedt1

  • 1Department of Veterinary Medicine, University of Maryland, College Park, Maryland, USA.

Mbio
|February 11, 2025
PubMed

Insights

Researchers found that phosphomannose isomerase (PMI) on the surface of Lyme disease bacteria binds to host collagen IV. Inhibiting this interaction offers a new therapeutic strategy against Lyme disease by blocking bacterial infectivity.

Area of Science:

  • Microbiology and Immunology
  • Structural Biology
  • Drug Discovery

Background:

  • Phosphomannose isomerase (PMI) is a conserved intracellular enzyme crucial for sugar metabolism.
  • The Lyme disease pathogen, *Borrelia burgdorferi*, possesses PMI, but its function beyond intracellular metabolism was unknown.
  • Host extracellular matrix components, like collagen IV, are often involved in pathogen adhesion and infection.

Purpose of the Study:

  • To investigate the novel functions and structural characteristics of *Borrelia burgdorferi* PMI (BbPMI).
  • To explore the potential role of BbPMI in host-pathogen interactions, specifically its binding to collagen IV.
  • To evaluate the therapeutic potential of targeting BbPMI for Lyme disease treatment.

Main Methods:

  • Structural modeling of BbPMI using AlphaFold 3 to analyze its active site and potential ligand interactions.
  • In vitro studies assessing the impact of PMI inhibitors on *B. burgdorferi* growth and infectivity.
  • Investigating the effect of anti-BbPMI antibodies and PMI inhibitors on pathogen transmission and infectivity in tick and murine models.

Main Results:

  • BbPMI is localized on the bacterial cell surface and binds to host collagen IV, a key component of the skin extracellular matrix.
  • Structural analysis revealed BbPMI's active site can accommodate collagen IV's glycosylated structures.
  • PMI inhibitors significantly impaired *B. burgdorferi* growth and infectivity, with no observed effect on other tested bacterial pathogens.

Conclusions:

  • BbPMI plays a critical role in mediating host-pathogen interactions by binding to collagen IV, facilitating Lyme disease pathogenesis.
  • Targeting the BbPMI-collagen IV interaction presents a promising novel therapeutic strategy for combating Lyme disease.
  • PMI inhibitors demonstrate specific efficacy against *Borrelia burgdorferi*, suggesting their potential as anti-Lyme disease agents.