A comparative study of the complete lipopolysaccharide structures and biosynthesis loci of Bordetella avium, B. hinzii, and B. trematum

Biochimie. 2019 Apr:159:81-92. doi: 10.1016/j.biochi.2018.12.011. Epub 2018 Dec 19.

Abstract

A dozen species of human and animal pathogens have been described to date in the Bordetella genus, with the majority being respiratory tract pathogens. Bordetella avium lipopolysaccharides have been shown to be important virulence factors for this bird pathogen. B. hinzii is closely related to the B. avium species, but has also been isolated from humans. B. trematum is associated to ear and blood infections in humans. Its lipid A structure, the biological active moiety of LPS, was found to be closely related to those of B. avium and B. hinzii. It is important to unveil the subtle structural modifications orchestrated during the LPS biosynthetic pathway to better understand host adaptation. The present data are also important in the context of deciphering the virulence pathways of this important genus containing the major pathogens B. pertussis and B. parapertussis, responsible for whooping cough. We recently reported the isolated lipid A structures of the three presented species, following the previously identified O-chain structures. In the present study, we provide details on the free and O-chain-linked core oligosaccharides which were required to characterize the complete LPS structures. Data are presented here in relation to relevant biosynthesis genes. The present characterization of the three species is well illustrated by Matrix Assisted Laser Desorption Mass Spectrometry experiments, and data were obtained mainly on native LPS molecules for the first time.

Keywords: B. hinzii; B. trematum; Bordetella avium; Endotoxin; Genomics; Lipopolysaccharide MALDI MS.

Publication types

  • Comparative Study

MeSH terms

  • Bordetella* / chemistry
  • Bordetella* / genetics
  • Bordetella* / metabolism
  • Genetic Loci*
  • Humans
  • Lipopolysaccharides* / biosynthesis
  • Lipopolysaccharides* / chemistry
  • Lipopolysaccharides* / genetics
  • Molecular Structure
  • Virulence Factors* / biosynthesis
  • Virulence Factors* / chemistry
  • Virulence Factors* / genetics

Substances

  • Lipopolysaccharides
  • Virulence Factors