Precisely Controlling Csr sRNA Levels by MshH Enhances Vibrio cholerae Colonization in Adult Mice

Mengting Shi1,2,3, Jinjie Ye1, Fenxia Fan4

  • 1Key Laboratory of Applied Technology on Green-Eco Healthy Animal Husbandry of Zhejiang Province, Zhejiang Provincial Engineering Laboratory for Animal Health Inspection and Internet Technology, College of Animal Science and Technology, College of Veterinary Medicine, Zhejiang A & F University, Hangzhou, Zhejiang, China.

Insights

Vibrio cholerae colonization in mice requires precise control of CsrB, CsrC, and CsrD RNA levels. The MshH protein regulates these levels, impacting bacterial survival and transmission.

Area of Science:

  • Microbiology
  • Bacterial Pathogenesis
  • Molecular Biology

Background:

  • Vibrio cholerae causes cholera, and intestinal colonization is vital for its pathogenicity and spread.
  • The Csr (Carbon Storage Regulator) system, including CsrA, CsrB, CsrC, and CsrD, is a key post-transcriptional regulator in many bacteria.
  • Understanding V. cholerae colonization mechanisms is crucial for developing effective interventions.

Purpose of the Study:

  • To investigate the role of the MshH protein in V. cholerae intestinal colonization.
  • To elucidate the regulatory pathway involving MshH, CsrB, CsrC, CsrD, and CsrA in V. cholerae colonization.
  • To determine how V. cholerae adapts to the adult mouse intestine.

Main Methods:

  • Genetic manipulation of V. cholerae, including deletion mutants of mshH, csrB, and csrD.
  • Quantification of CsrB, CsrC, and CsrD RNA levels using RT-qPCR.
  • Assessment of V. cholerae colonization in the intestine of adult mice.
  • Analysis of MshH-dependent degradation and CsrA-dependent stabilization of Csr RNAs.

Main Results:

  • Deletion of mshH resulted in a significant defect in V. cholerae intestinal colonization in adult mice.
  • mshH deletion led to increased CsrB and CsrD RNA levels and decreased CsrC RNA levels.
  • Deletion of CsrB and CsrD restored both the colonization defect and CsrC levels in the mshH mutant.
  • MshH primarily controls CsrB and CsrD RNA degradation, while CsrA stabilizes CsrC RNA.

Conclusions:

  • Precise regulation of CsrB, CsrC, and CsrD RNA levels by the MshH-CsrB/C/D-CsrA pathway is essential for V. cholerae colonization of adult mice.
  • V. cholerae employs differential strategies to control Csr RNA abundance, conferring a survival advantage in the host intestine.
  • This study reveals a novel regulatory mechanism crucial for V. cholerae fitness and transmissibility.