A Single Amino Acid Substitution in CspA Increases Germination Sensitivity and Broadens Bile Salt Germinant

Isabel Roseiro1, Alexandra Nunes2,3,4, Diogo Martins1

  • 1Instituto de Tecnologia Química e Biológica António Xavier, Oeiras, Portugal.

Insights

Clostridioides difficile Ribotype 033 (RT033) spores show enhanced germination, suggesting adaptation to animal environments. A specific mutation in CspA alters bile-salt sensing, potentially impacting disease transmission and zoonotic spread.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Ecology

Background:

  • Clostridioides difficile is a significant pathogen, with increasing community-acquired infections.
  • Ribotype 033 (RT033) strains are linked to animal and environmental reservoirs, but their ecology is unclear.

Purpose of the Study:

  • To investigate the ecological traits of Clostridioides difficile RT033 strains.
  • To understand the mechanisms behind enhanced spore germination in RT033.

Main Methods:

  • Comparative analysis of RT033 spore germination.
  • Genetic analysis to identify determinants of germination phenotype.
  • Functional characterization of CspA mutations and the cspBAC operon.

Main Results:

  • RT033 spores exhibit enhanced germination sensitivity and broader germinant specificity, including response to inhibitory bile salts.
  • A single amino acid substitution (R1036I) in CspA was identified as the key determinant.
  • Expression of the RT033 cspBAC operon conferred increased sensitivity and responsiveness in a laboratory strain.

Conclusions:

  • A naturally occurring adaptation in bile-salt sensing in RT033 spores likely reflects adaptation to animal-associated environments.
  • This rewiring may influence the persistence, transmission, and zoonotic potential of this C. difficile lineage.