Analysis of the vaccine potential of a laboratory Escherichia coli strain in a Japanese flounder model
Escherichia coli DH5α is a genetically tailored laboratory strain that is commonly used for general cloning. In this study, the vaccine potential of DH5α was investigated. It was found that when used as a live vaccine, DH5α could afford effective protection upon Japanese flounder against Aeromonas h...
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Published in | Fish & shellfish immunology Vol. 28; no. 2; pp. 275 - 280 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
England
Elsevier Ltd
01.02.2010
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Abstract | Escherichia coli DH5α is a genetically tailored laboratory strain that is commonly used for general cloning. In this study, the vaccine potential of DH5α was investigated. It was found that when used as a live vaccine, DH5α could afford effective protection upon Japanese flounder against
Aeromonas hydrophila infection. Vaccination with purified outer membrane proteins and lipopolysaccharides of DH5α failed to induce protective immunity against
A. hydrophila. Specific antibody production was observed in fish immunized with DH5α, which lasted at least 8 weeks and was enhanced by a booster injection during the vaccination process. Analysis of the transcription profiles of immune-related genes showed that vaccination with DH5α heightened the expression of the genes encoding factors that are likely involved in both specific and nonspecific immunities. Furthermore, compared to the control fish, fish vaccinated with DH5α/pAQ1, which is DH5α harboring the plasmid pAQ1 that expresses the coding element of a
Vibrio harveyi antigen, exhibited significantly improved survival rates following
V. harveyi and
A. hydrophila challenges. These results demonstrate that DH5α possesses intrinsic immunoprotective potential against
A. hydrophila. This property, together with the feature of cloning friendliness, should render DH5α useful in the construction of cross-protective vaccines. |
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AbstractList | Escherichia coli DH5alpha is a genetically tailored laboratory strain that is commonly used for general cloning. In this study, the vaccine potential of DH5alpha was investigated. It was found that when used as a live vaccine, DH5alpha could afford effective protection upon Japanese flounder against Aeromonas hydrophila infection. Vaccination with purified outer membrane proteins and lipopolysaccharides of DH5alpha failed to induce protective immunity against A. hydrophila. Specific antibody production was observed in fish immunized with DH5alpha, which lasted at least 8 weeks and was enhanced by a booster injection during the vaccination process. Analysis of the transcription profiles of immune-related genes showed that vaccination with DH5alpha heightened the expression of the genes encoding factors that are likely involved in both specific and nonspecific immunities. Furthermore, compared to the control fish, fish vaccinated with DH5alpha/pAQ1, which is DH5alpha harboring the plasmid pAQ1 that expresses the coding element of a Vibrio harveyi antigen, exhibited significantly improved survival rates following V. harveyi and A. hydrophila challenges. These results demonstrate that DH5alpha possesses intrinsic immunoprotective potential against A. hydrophila. This property, together with the feature of cloning friendliness, should render DH5alpha useful in the construction of cross-protective vaccines. Escherichia coli DH5a is a genetically tailored laboratory strain that is commonly used for general cloning. In this study, the vaccine potential of DH5a was investigated. It was found that when used as a live vaccine, DH5a could afford effective protection upon Japanese flounder against Aeromonas hydrophila infection. Vaccination with purified outer membrane proteins and lipopolysaccharides of DH5a failed to induce protective immunity against A. hydrophila. Specific antibody production was observed in fish immunized with DH5a, which lasted at least 8 weeks and was enhanced by a booster injection during the vaccination process. Analysis of the transcription profiles of immune-related genes showed that vaccination with DH5a heightened the expression of the genes encoding factors that are likely involved in both specific and nonspecific immunities. Furthermore, compared to the control fish, fish vaccinated with DH5a/pAQ1, which is DH5a harboring the plasmid pAQ1 that expresses the coding element of a Vibrio harveyi antigen, exhibited significantly improved survival rates following V. harveyi and A. hydrophila challenges. These results demonstrate that DH5a possesses intrinsic immunoprotective potential against A. hydrophila. This property, together with the feature of cloning friendliness, should render DH5a useful in the construction of cross-protective vaccines. Escherichia coli DH5α is a genetically tailored laboratory strain that is commonly used for general cloning. In this study, the vaccine potential of DH5α was investigated. It was found that when used as a live vaccine, DH5α could afford effective protection upon Japanese flounder against Aeromonas hydrophila infection. Vaccination with purified outer membrane proteins and lipopolysaccharides of DH5α failed to induce protective immunity against A. hydrophila. Specific antibody production was observed in fish immunized with DH5α, which lasted at least 8 weeks and was enhanced by a booster injection during the vaccination process. Analysis of the transcription profiles of immune-related genes showed that vaccination with DH5α heightened the expression of the genes encoding factors that are likely involved in both specific and nonspecific immunities. Furthermore, compared to the control fish, fish vaccinated with DH5α/pAQ1, which is DH5α harboring the plasmid pAQ1 that expresses the coding element of a Vibrio harveyi antigen, exhibited significantly improved survival rates following V. harveyi and A. hydrophila challenges. These results demonstrate that DH5α possesses intrinsic immunoprotective potential against A. hydrophila. This property, together with the feature of cloning friendliness, should render DH5α useful in the construction of cross-protective vaccines. |
Author | Cheng, Shuang Jiao, Xu-dong Sun, Li Zhang, Min |
Author_xml | – sequence: 1 givenname: Shuang surname: Cheng fullname: Cheng, Shuang organization: Institute of Oceanology, Chinese Academy of Sciences, 7 Nanhai Road, Qingdao 266071, PR China – sequence: 2 givenname: Xu-dong surname: Jiao fullname: Jiao, Xu-dong organization: Institute of Oceanology, Chinese Academy of Sciences, 7 Nanhai Road, Qingdao 266071, PR China – sequence: 3 givenname: Min surname: Zhang fullname: Zhang, Min organization: Institute of Oceanology, Chinese Academy of Sciences, 7 Nanhai Road, Qingdao 266071, PR China – sequence: 4 givenname: Li surname: Sun fullname: Sun, Li email: lsun@ms.qdio.ac.cn organization: Institute of Oceanology, Chinese Academy of Sciences, 7 Nanhai Road, Qingdao 266071, PR China |
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Keywords | DH5α Aeromonas hydrophila Cross-protection Vibrio harveyi Escherichia coli |
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SubjectTerms | Aeromonas hydrophila Aeromonas hydrophila - physiology Animals Antibodies, Bacterial - blood Bacterial Outer Membrane Proteins - immunology Bacterial Vaccines - immunology Cross Protection - immunology Cross-protection DH5α Escherichia coli Escherichia coli - immunology Fish Diseases - microbiology Fish Diseases - mortality Fish Diseases - prevention & control Flounder - immunology Flounder - microbiology Gene Expression Regulation Gram-Negative Bacterial Infections - mortality Gram-Negative Bacterial Infections - prevention & control Gram-Negative Bacterial Infections - veterinary Lipopolysaccharides - immunology Marine Pleuronectiformes Survival Analysis Vibrio harveyi |
Title | Analysis of the vaccine potential of a laboratory Escherichia coli strain in a Japanese flounder model |
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