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Full-Text Articles in Medicine and Health Sciences
Transposon Mutagenesis In Mycobacterium Avium Subspecies Paratuberculosis, John P. Bannantine, Denise K. Zinniel, Raul G. Barletta
Transposon Mutagenesis In Mycobacterium Avium Subspecies Paratuberculosis, John P. Bannantine, Denise K. Zinniel, Raul G. Barletta
School of Veterinary and Biomedical Sciences: Faculty Publications
While transposon mutagenesis has been developed for Mycobacterium avium subspecies paratuberculosis (Map), relatively few laboratories have adopted this important genetic tool to examine gene function and essentiality. Here we describe the construction of a Map transposon library using the Himar1 mariner transposon, but concepts can also be applied to the Tn5367 transposon, which has also been used by our group. Delivery of the transposon is by a temperature-sensitive phagemid, ϕMycoMarT7, and plating transductants requires patience and specialized media due to length of incubation required to observe colonies. Several transposon mutants obtained from these libraries have been tested in vaccine and …
A Rational Framework For Evaluating The Next Generation Of Vaccines Against Mycobacterium Avium Subspecies Paratuberculosis, John P. Bannantine, Murray E. Hines Ii, Luiz E. Bermudez, Adel M. Talaat, Srinand Sreevatsan, Judith R. Stabel, Yung-Fu Chang, Paul M. Coussens, Raúl G. Barletta, William C. Davis, Desmond M. Collins, Yrjö T. Gröhn, Vivek Kapur
A Rational Framework For Evaluating The Next Generation Of Vaccines Against Mycobacterium Avium Subspecies Paratuberculosis, John P. Bannantine, Murray E. Hines Ii, Luiz E. Bermudez, Adel M. Talaat, Srinand Sreevatsan, Judith R. Stabel, Yung-Fu Chang, Paul M. Coussens, Raúl G. Barletta, William C. Davis, Desmond M. Collins, Yrjö T. Gröhn, Vivek Kapur
School of Veterinary and Biomedical Sciences: Faculty Publications
Since the early 1980s, several investigations have focused on developing a vaccine against Mycobacterium avium subspecies paratuberculosis (MAP), the causative agent of Johne's disease in cattle and sheep. These studies used whole-cell inactived vaccines that have proven useful in limiting disease progression, but have not prevented infection. In contrast, modified live vaccines that invoke a Th1 type immune response, may improve protection against infection. Spurred by recent advances in the ability to create defined knockouts in MAP, several independent laboratories have developed modified live vaccine candidates by transcriptional mutation of virulence and metablolic genes in MAP. In order to accelerate …
Evaluation Of Eight Live Attenuated Vaccine Candidates For Protection Against Challenge With Virulent Mycobacterium Avium Subspecies Paratuberclosis In Mice, John Bannantine, Jamie L. Everman, Sasha J. J.Rose, Lmar Babrak, Robab Katani, Raul G. Barletta, Adel M. Talaat, Yrjö J. Gröhn, Yung-Fu Chang, Vivek Kapur, Luiz E. Bermudez
Evaluation Of Eight Live Attenuated Vaccine Candidates For Protection Against Challenge With Virulent Mycobacterium Avium Subspecies Paratuberclosis In Mice, John Bannantine, Jamie L. Everman, Sasha J. J.Rose, Lmar Babrak, Robab Katani, Raul G. Barletta, Adel M. Talaat, Yrjö J. Gröhn, Yung-Fu Chang, Vivek Kapur, Luiz E. Bermudez
School of Veterinary and Biomedical Sciences: Faculty Publications
Johne's disease is caused by Mycobacterium avium subsp. paratuberculosis (MAP), which results in serious economic losses worldwide in farmed livestock such as cattle, sheep, and goats. To control this disease, an effective vaccine with minimal adverse effects is needed. In order to identify a live vaccine for Johne's disease, we evaluated eight attenuated mutant strains of MAP using a C57BL/6 mouse model. The persistaence of the vaccine candidates was measured at 6, 12, and 18 weeks post vaccination. Only strains 320, 321, and 329 colonized both the liver and spleens up until the 12-week time point. The remaining five mutants …
Identification Of Mycobacterium Paratuberculosis Gene Expression Signals, John P. Bannantine, Raul G. Barletta, Charles O. Thoen, Robert E. Andrews Jr.
Identification Of Mycobacterium Paratuberculosis Gene Expression Signals, John P. Bannantine, Raul G. Barletta, Charles O. Thoen, Robert E. Andrews Jr.
School of Veterinary and Biomedical Sciences: Faculty Publications
Mycobacterium paratuberculosis promoter-containing clones were isolated from a genomic DNA library constructed in the transcriptional-translational fusion vector pYUB76. The promoter-containing DNA fragments were identified in the surrogate host Mycobacterium smegmatis by expression of the promoterless lacZ reporter gene of pYUB76. The expression signals exhibited a wide range of strengths, as indicated by their corresponding β-galactosidase activities. Eight clones were sequenced and characterized further. Predicted open reading frames and codon usage were identified by computer analysis. Database searching for related sequences using the BLAST method revealed no homologies. Transcriptional activity was measured by slot-blot hybridization with steady-state RNA isolated from lacZ …