Survival protein A is essential for virulence in Yersinia pestis
Plague is a highly pathogenic disease caused by the bacterium Yersinia pestis. There is currently no vaccine available for prophylaxis and antibiotic resistant strains have been isolated, thus there is a need for the development of new countermeasures to treat this disease. Survival protein A (SurA)...
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Published in | Microbial pathogenesis Vol. 92; pp. 50 - 53 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Elsevier Ltd
01.03.2016
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Abstract | Plague is a highly pathogenic disease caused by the bacterium Yersinia pestis. There is currently no vaccine available for prophylaxis and antibiotic resistant strains have been isolated, thus there is a need for the development of new countermeasures to treat this disease. Survival protein A (SurA) is a chaperone that has been linked to virulence in several species of bacteria, including the close relative Yersinia pseudotuberculosis. In this study, we aimed to evaluate the role of SurA in virulence of the highly pathogenic Y. pestis by creating an unmarked surA deletion mutant. The Y. pestis ΔsurA mutant was found to be more susceptible to membrane perturbing agents and was completely avirulent in a mouse infection model when delivered up to 2.1 × 105 CFU by the subcutaneous route. This provides strong evidence that SurA would make a promising antimicrobial target.
•This study evaluates the role of SurA in Yersinia pestis.•Deletion of the surA gene has an effect on the cell envelope.•A surA mutant is avirulent in a Y. pestis mouse infection model. |
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AbstractList | Plague is a highly pathogenic disease caused by the bacterium Yersinia pestis. There is currently no vaccine available for prophylaxis and antibiotic resistant strains have been isolated, thus there is a need for the development of new countermeasures to treat this disease. Survival protein A (SurA) is a chaperone that has been linked to virulence in several species of bacteria, including the close relative Yersinia pseudotuberculosis. In this study, we aimed to evaluate the role of SurA in virulence of the highly pathogenic Y. pestis by creating an unmarked surA deletion mutant. The Y. pestis ΔsurA mutant was found to be more susceptible to membrane perturbing agents and was completely avirulent in a mouse infection model when delivered up to 2.1 × 105 CFU by the subcutaneous route. This provides strong evidence that SurA would make a promising antimicrobial target.
•This study evaluates the role of SurA in Yersinia pestis.•Deletion of the surA gene has an effect on the cell envelope.•A surA mutant is avirulent in a Y. pestis mouse infection model. Plague is a highly pathogenic disease caused by the bacterium Yersinia pestis. There is currently no vaccine available for prophylaxis and antibiotic resistant strains have been isolated, thus there is a need for the development of new countermeasures to treat this disease. Survival protein A (SurA) is a chaperone that has been linked to virulence in several species of bacteria, including the close relative Yersinia pseudotuberculosis. In this study, we aimed to evaluate the role of SurA in virulence of the highly pathogenic Y. pestis by creating an unmarked surA deletion mutant. The Y. pestis ΔsurA mutant was found to be more susceptible to membrane perturbing agents and was completely avirulent in a mouse infection model when delivered up to 2.1 × 10(5) CFU by the subcutaneous route. This provides strong evidence that SurA would make a promising antimicrobial target. Plague is a highly pathogenic disease caused by the bacterium Yersinia pestis. There is currently no vaccine available for prophylaxis and antibiotic resistant strains have been isolated, thus there is a need for the development of new countermeasures to treat this disease. Survival protein A (SurA) is a chaperone that has been linked to virulence in several species of bacteria, including the close relative Yersinia pseudotuberculosis. In this study, we aimed to evaluate the role of SurA in virulence of the highly pathogenic Y. pestis by creating an unmarked surA deletion mutant. The Y. pestis Delta surA mutant was found to be more susceptible to membrane perturbing agents and was completely avirulent in a mouse infection model when delivered up to 2.1 105 CFU by the subcutaneous route. This provides strong evidence that SurA would make a promising antimicrobial target. |
Author | Scott, Andrew E. Ireland, Philip M. Norville, Isobel H. Southern, Stephanie J. Jenner, Dominic C. Sarkar-Tyson, Mitali |
Author_xml | – sequence: 1 givenname: Stephanie J. surname: Southern fullname: Southern, Stephanie J. email: sjsouthern@mail.dstl.gov.uk organization: Defence Science and Technology Laboratory, Biomedical Sciences, Porton Down, Salisbury, Wiltshire, SP4 0JQ, UK – sequence: 2 givenname: Andrew E. orcidid: 0000-0003-1839-8857 surname: Scott fullname: Scott, Andrew E. organization: Defence Science and Technology Laboratory, Biomedical Sciences, Porton Down, Salisbury, Wiltshire, SP4 0JQ, UK – sequence: 3 givenname: Dominic C. surname: Jenner fullname: Jenner, Dominic C. organization: Defence Science and Technology Laboratory, Biomedical Sciences, Porton Down, Salisbury, Wiltshire, SP4 0JQ, UK – sequence: 4 givenname: Philip M. surname: Ireland fullname: Ireland, Philip M. organization: Defence Science and Technology Laboratory, Biomedical Sciences, Porton Down, Salisbury, Wiltshire, SP4 0JQ, UK – sequence: 5 givenname: Isobel H. surname: Norville fullname: Norville, Isobel H. organization: Defence Science and Technology Laboratory, Biomedical Sciences, Porton Down, Salisbury, Wiltshire, SP4 0JQ, UK – sequence: 6 givenname: Mitali surname: Sarkar-Tyson fullname: Sarkar-Tyson, Mitali organization: Defence Science and Technology Laboratory, Biomedical Sciences, Porton Down, Salisbury, Wiltshire, SP4 0JQ, UK |
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Keywords | Virulence Mutant Yersinia pestis |
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Snippet | Plague is a highly pathogenic disease caused by the bacterium Yersinia pestis. There is currently no vaccine available for prophylaxis and antibiotic resistant... |
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SubjectTerms | Animals Bacterial Proteins - genetics Bacterial Proteins - metabolism Disease Models, Animal Female Gene Deletion Genetic Complementation Test Mice Mutant Plague - microbiology Plague - mortality Virulence Virulence - genetics Virulence Factors Yersinia pestis Yersinia pestis - pathogenicity Yersinia pestis - physiology Yersinia pseudotuberculosis |
Title | Survival protein A is essential for virulence in Yersinia pestis |
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