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Published on: May 30, 2013
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.
Abstract:
Vibrio cholerae is the causative agent of cholera. Effective intestinal colonization is a key step for V. cholerae pathogenicity and transmission. In this study, we found that deleting mshH, a homolog of the Escherichia coli CsrD protein, caused a V. cholerae colonization defect in the intestine of adult mice. By analyzing the RNA levels of CsrB, CsrC, and CsrD, we found that deleting mshH increased the levels of CsrB and CsrD but decreased the level of CsrC. However, deleting CsrB and -D not only recovered the mshH deletion mutant colonization defect but also recovered CsrC to wild-type levels. These results indicated that controlling the RNA levels of CsrB, -C, and -D is crucial for V. cholerae colonization of adult mice. We further demonstrated that the RNA levels of CsrB and CsrD were mainly controlled by MshH-dependent degradation, yet the level of CsrC was mainly determined by the CsrA-dependent stabilization. Our data show that V. cholerae differentially controls CsrB, -C, and -D abundance through the MshH-CsrB/C/D-CsrA regulatory pathway to finely regulate the activity of CsrA targets such as ToxR, so as to better survive in adult mouse intestine. IMPORTANCE The ability of V. cholerae to colonize the intestine is a key factor for its fitness and transmissibility between hosts. Here, we investigated the mechanism of V. cholerae colonization of adult mammal intestine and found that precisely controlling the CsrB, -C, and -D contents by MshH and CsrA plays an essential role for V. cholerae colonization in the adult mouse intestine. These data expand our knowledge on the mechanism of V. cholerae controlling the RNA level of CsrB, -C, and -D and highlight the importance that the different strategies used by V. cholerae to regulate the RNA level of CsrB, -C, and -D confer the bacterium with a survival advantage.
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.
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