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        The role of rpoS, hmp, and ssrAB in Salmonella enterica Gallinarum and evaluation of a triple-deletion mutant as a live vaccine candidate in Lohmann layer chickens

        조영재,박윤미,Abhijit Kashinath Barate,박소연,박희정,이미래,Quang Lam Truong,윤장원,방일수,한태욱 대한수의학회 2015 Journal of Veterinary Science Vol.16 No.2

        Salmonella enterica Gallinarum (SG) causes fowl typhoid (FT), a septicemic disease in avian species. We constructed deletion mutants lacking the stress sigma factor RpoS, the nitric oxide (NO)-detoxifying flavohemoglobin Hmp, and the SsrA/SsrB regulator to confirm the functions of these factors in SG. All gene products were fully functional in wild-type (WT) SG whereas mutants harboring single mutations or a combination of rpoS, hmp, and ssrAB mutations showed hypersusceptibility to H2O2, loss of NO metabolism, and absence of Salmonella pathogenicity island (SPI)-2 expression, respectively. A triple-deletion mutant, SGΔ3 (SGΔrpoSΔhmpΔssrAB), was evaluated for attenuated virulence and protection efficacy in two-week-old Lohmann layer chickens. The SGΔ3 mutant did not cause any mortality after inoculation with either 1 × 106 or 1 × 108 colony-forming units (CFUs) of bacteria. Significantly lower numbers of salmonellae were recovered from the liver and spleen of chickens inoculated with the SGΔ3 mutant compared to chickens inoculated with WT SG. Vaccination with the SGΔ3 mutant conferred complete protection against challenge with virulent SG on the chickens comparable to the group vaccinated with a conventional vaccine strain, SG9R. Overall, these results indicate that SGΔ3 could be a promising candidate for a live Salmonella vaccine against FT.

      • SCISCIE

        Characterization and Protective Property of <i>Brucella abortus</i> <i>cydC</i> and <i>looP</i> Mutants

        Truong, Quang Lam,Cho, Youngjae,Barate, Abhijit Kashinath,Kim, Suk,Hahn, Tae-Wook American Society for Microbiology 2014 CLINICAL AND VACCINE IMMUNOLOGY Vol.21 No.11

        <P><I>Brucella abortus</I> readily multiplies in professional or nonprofessional phagocytes <I>in vitro</I> and is highly virulent in mice. Isogenic mutants of <I>B. abortus</I> biovar 1 strain IVKB9007 lacking the ATP/GDP-binding protein motif A (P-loop) (named <I>looP</I>; designated here the IVKB9007 <I>looP</I>::Tn<I>5</I> mutant) and the ATP-binding/permease protein (<I>cydC</I>; designated here the IVKB9007 <I>cydC</I>::Tn<I>5</I> mutant) were identified and characterized by transposon mutagenesis using the mini-Tn<I>5</I>Km2 transposon. Both mutants were found to be virtually incapable of intracellular replication in both murine macrophages (RAW264.7) and the HeLa cell line, and their virulence was significantly impaired in BALB/c mice. Respective complementation of the IVKB9007 <I>looP</I>::Tn<I>5</I> and IVKB9007 <I>cydC</I>::Tn<I>5</I> mutants restored their ability to survive <I>in vitro</I> and <I>in vivo</I> to a level comparable with that of the wild type. These findings indicate that the <I>cydC</I> and <I>looP</I> genes play important roles in the virulence of <I>B. abortus</I>. In addition, intraperitoneal immunization of mice with a dose of the live IVKB9007 <I>looP</I>::Tn<I>5</I> and IVKB9007 <I>cydC</I>::Tn<I>5</I> mutants provided a high degree of protection against challenge with pathogenic <I>B. abortus</I> strain 544. Both mutants should be evaluated further as a live attenuated vaccine against bovine brucellosis for their ability to stimulate a protective immune response.</P>

      • SCIESCOPUSKCI등재

        Proteomic Analysis of Outer Membrane Proteins in Salmonella enterica Enteritidis

        ( Young Jae Cho ),( So Yeon Park ),( Abhijit Kashinath Barate ),( Quang Lam Truong ),( Jang Hyuck Han ),( Cheong Hwan Jung ),( Jang Won Yoon ),( Seong Beom Cho ),( Tae Wook Hahn ) 한국미생물 · 생명공학회 2015 Journal of microbiology and biotechnology Vol.25 No.2

        Salmonella enterica serovar Enteritidis is the predominant agent causing salmonellosis in chickens and other domestic animals. In an attempt to identify antigenic S. Enteritidis outer membrane proteins (OMPs) that may be useful for subunit vaccine development, we established a proteomic map and database of antigenic S. Enteritidis OMPs. In total, 351 and 301 spots respectively from S. Enteritidis strain 270 and strain 350 were detected by twodimensional gel electrophoresis. Fifty-one antigen-reactive spots were detected by antisera on two-dimensional immunoblots and identified as 12 specific proteins by matrix-assisted laser desorption ionization time-of-flight mass spectrometry. OmpA and DNA starvation/ stationary phase protection protein (Dps) were the most abundant proteins among the identified OMPs, comprising 22 and 12 protein species, respectively. Interestingly, we found that the Dps of S. Enteritidis is also antigenic. OmpW was also verified to have high antigenicity. These results show that OmpA, Dps, and possibly OmpW are antigenic proteins. This study provides new insights into our understanding of the immunogenic characteristicsof S. Enteritidis OMPs.

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