Cold Shock Response and Major Cold Shock Proteins of Vibrio cholerae
Open Access
- 1 November 2003
- journal article
- research article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 69 (11) , 6361-6369
- https://doi.org/10.1128/aem.69.11.6361-6369.2003
Abstract
When exponentially growing Vibrio cholerae cells were shifted from 37°C to various lower temperatures, it was found that the organism could adapt and grow at temperatures down to 15°C, below which the growth was completely arrested. There was no difference between the patterns of the cold shock responses in toxinogenic and nontoxinogenic strains of V. cholerae . Gel electrophoretic analyses of proteins of cold-exposed cells revealed significant induction of two major cold shock proteins (Csps), whose molecular masses were 7.7 kDa (CspA VC ) and 7.5 kDa (CspV), and six other Csps, most of which were much larger. We cloned, sequenced, and analyzed the cspV gene encoding the CspV protein of V. cholerae O139 strain SG24. Although CspA VC and CspV have similar kinetics of synthesis and down-regulation, the corresponding genes, cspA and cspV , which are located in the small chromosome, are not located in the same operon. A comparative analysis of the kinetics of synthesis revealed that the CspV protein was synthesized de novo only during cold shock. Although both CspA VC and CspV were stable for several hours in the cold, the CspV protein was degraded rapidly when the culture was shifted back to 37°C, suggesting that this protein is probably necessary for adaptation at lower temperatures. Northern blot analysis confirmed that the cspV gene is cold shock inducible and is regulated tightly at the level of transcription. Interestingly, the cspV gene has a cold shock-inducible promoter which is only 12 nucleotides from the translational start site, and therefore, it appears that no unusually long 5′ untranslated region is present in its mRNA transcript. Thus, this promoter is an exception compared to other promoters of cold shock-inducible genes of different organisms, including Escherichia coli . Our results suggest that V. cholerae may use an alternative pathway for regulation of gene expression during cold shock.This publication has 45 references indexed in Scilit:
- Host-induced epidemic spread of the cholera bacteriumNature, 2002
- Cold-shock response and cold-shock proteinsCurrent Opinion in Microbiology, 1999
- Expression of the cold-shock gene cspB in Salmonella typhimurium occurs below a threshold temperatureMicrobiology, 1998
- Rearrangements in the Genomes of Vibrio cholerae Strains Belonging to Different Serovars and BiovarsInternational Journal of Systematic and Evolutionary Microbiology, 1997
- Global Climate and Infectious Disease: The Cholera ParadigmScience, 1996
- Emergence of a New Cholera Pandemic: Molecular Analysis of Virulence Determinants in Vibrio cholerae 0139 and Development of a Live Vaccine PrototypeThe Journal of Infectious Diseases, 1994
- Vibrio cholerae 0139 El Tor biotypeThe Lancet, 1994
- Recombinant derivative of a naturally occurring non-toxinogenic Vibrio cholerae 01 expressing the B subunit of cholera toxin: a potential oral vaccine strainVaccine, 1994
- Ecology ofVibrio cholerae in the freshwater environs of Calcutta, IndiaMicrobial Ecology, 1988
- High resolution two-dimensional electrophoresis of basic as well as acidic proteinsCell, 1977