Genetic and molecular Omp25 analyses from worldwide Brucella canis strains: Possible mutational influences in protein function

Gene. 2022 Apr 5:817:146175. doi: 10.1016/j.gene.2021.146175. Epub 2022 Jan 11.

Abstract

Brucella canis is responsible for canine brucellosis, a neglected zoonotic disease. The omp25 gene has been described as an important marker for Brucella intra-species differentiation, in addition to the ability to interact with the host immune system. Therefore, this study investigated the omp25 sequence from B. canis strains associated to a phylogenetic characterization and the unveiling of the molecular structure. In vitro analyses comprised DNA extraction, PCR, and sequencing of omp25 from 19 B. canis strains. Moreover, in silico analyses were performed at nucleotide level for phylogenetic characterization and evolutionary history of B. canis omp25 gene; and in amino acid level including modeling, dynamics, and epitope prediction of B. canis Omp25 protein. Here, we identified a new mutation, L109P, which diverges the worldwide omp25 sequences in two large branches. Interestingly, this mutation appears to have epidemiology importance, based on a geographical distribution of B. canis strains. Structural and molecular dynamics analyses of Omp25 revealed that Omp25L109P does not sustain its native β-barrel. Likewise, the conformation of B-cell epitope on the mutated region was changed in Omp25L109P protein. Even without an evolutive marker, the new identified mutation appears to affect the basic function of B. canis Omp25 protein, which could indicate virulence adaptation for some B. canis strains in a context of geographical disposition.

Keywords: Antigenicity; Canine brucellosis; Outer membrane protein; Phylogenetic analysis; Reproductive failure.

MeSH terms

  • Bacterial Proteins* / chemistry
  • Bacterial Proteins* / genetics
  • Bacterial Proteins* / physiology
  • Brucella canis* / classification
  • Brucella canis* / genetics
  • Brucella canis* / physiology
  • Evolution, Molecular
  • Genes, Bacterial
  • Models, Molecular
  • Mutation
  • Phylogeny
  • Polymerase Chain Reaction
  • Protein Conformation
  • Sequence Analysis, DNA

Substances

  • Bacterial Proteins
  • Omp25 protein, Brucella canis