1.Construction and characterization of Actinobacillus pleuropneumoniae serovar 7 live attenuated vaccine strain co-expressing ApxIA.
Jinlin LIU ; Yan CHEN ; Linlin HU ; Weicheng BEI ; Huanchun CHEN
Chinese Journal of Biotechnology 2010;26(3):305-310
Actinobacillus pleuropneumoniae (A. pleuropneumoniae), the causative agent of porcine contagious pleuropneumonia (PCP), is a significant pathogen of the world pig industry, vaccination is potentially an effective tool for the prevention of PCP. The purpose of present study was to enhance the immunogenicity of A. pleuropneumoniae live vaccine strain HB04C- (serovar 7), which was unable to express ApxIA, and to develop effective multivalent vaccines for the respiratory pathogens based on the attenuated A. pleuropneumoniae. We introduced a shuttle vector containing intact apxIA gene into HB04C-, generating HB04C2, an A. pleuropneumoniae serovar 7 live attenuated vaccine strain co-expressing ApxIA. Then we investigated the biological characteristics of HB04C2. We found that the shuttle vector expressing ApxIA was stable in HB04C2, and the growth ability of HB04C2 was not affected by the shuttle vector. We observed that HB04C2 elicited detectable antibodies against ApxIA and ApxIIA when it was administrated intratracheally as a live vaccine in pigs, and all immunized pigs were protected from heterologous virulent A. pleuropneumoniae (serovar 1) challenge. In conclusion, we demonstrated that A. pleuropneumoniae live vaccine could be used as a vector for expression of heterologous antigens.
Actinobacillus Infections
;
prevention & control
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veterinary
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Actinobacillus pleuropneumoniae
;
classification
;
immunology
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Animals
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Bacterial Proteins
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biosynthesis
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genetics
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Bacterial Vaccines
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biosynthesis
;
immunology
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Hemolysin Proteins
;
biosynthesis
;
genetics
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Pleuropneumonia
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microbiology
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prevention & control
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Swine
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Swine Diseases
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microbiology
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prevention & control
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Vaccines, Attenuated
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biosynthesis
;
immunology
2.Generation of transgenic corn-derived Actinobacillus pleuropneumoniae ApxIIA fused with the cholera toxin B subunit as a vaccine candidate.
Min Kyoung SHIN ; Myung Hwan JUNG ; Won Jung LEE ; Pil Son CHOI ; Yong Suk JANG ; Han Sang YOO
Journal of Veterinary Science 2011;12(4):401-403
Corn, one of the most important forage crops worldwide, has proven to be a useful expression vehicle due to the availability of established transformation procedures for this well-studied plant. The exotoxin Apx, a major virulence factor, is recognized as a common antigen of Actinobacillus (A.) pleuropneumoniae, the causative agent of porcine pleuropneumonia. In this study, a cholera toxin B (CTB)-ApxIIA#5 fusion protein and full-size ApxIIA expressed in corn seed, as a subunit vaccine candidate, were observed to induce Apx-specific immune responses in mice. These results suggest that transgenic corn-derived ApxIIA and CTB-ApxIIA#5 proteins are potential vaccine candidates against A. pleuropneumoniae infection.
Actinobacillus Infections/microbiology/*prevention & control
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Actinobacillus pleuropneumoniae
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Animals
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Antigens, Bacterial/immunology
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Bacterial Proteins/*immunology
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Bacterial Vaccines/*immunology
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Cholera Toxin/*chemistry
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Female
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Hemolysin Proteins/*immunology
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Immunization, Secondary
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Mice
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Mice, Inbred ICR
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Plants, Genetically Modified
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Zea mays/*genetics