Molecules (Jul 2024)

Synthesis of a <i>Borrelia burgdorferi</i>-Derived Muropeptide Standard Fragment Library

  • Rachel Putnik,
  • Junhui Zhou,
  • Irnov Irnov,
  • Elise Garner,
  • Min Liu,
  • Klare L. Bersch,
  • Christine Jacobs-Wagner,
  • Catherine Leimkuhler Grimes

DOI
https://doi.org/10.3390/molecules29143297
Journal volume & issue
Vol. 29, no. 14
p. 3297

Abstract

Read online

The interplay between the human innate immune system and bacterial cell wall components is pivotal in understanding diseases such as Crohn’s disease and Lyme arthritis. Lyme disease, caused by Borrelia burgdorferi, is the most prevalent tick-borne illness in the United States, with a substantial number of cases reported annually. While antibiotic treatments are generally effective, approximately 10% of Lyme disease cases develop persistent arthritis, suggesting a dysregulated host immune response. We have previously identified a link between the immunogenic B. burgdorferi peptidoglycan (PG) and Lyme arthritis and showed that this pathogen sheds significant amounts of PG fragments during growth. Here, we synthesize these PG fragments, including ornithine-containing monosaccharides and disaccharides, to mimic the unique composition of Borrelia cell walls, using reproducible and rigorous synthetic methods. This synthetic approach allows for the modular preparation of PG derivatives, providing a diverse library of well-defined fragments. These fragments will serve as valuable tools for investigating the role of PG-mediated innate immune response in Lyme disease and aid in the development of improved diagnostic methods and treatment strategies.

Keywords