Browse By Person: Mathews, Sarah
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Number of items: 18.
Book Chapter
Mathews, Sarah & Timms, Peter (2006) In Silico Identification of Chlamydial Promoters and Their Role in Regulation of Development. In Bavoil, P & Wyrick, P (Eds.) Chlamydia: Genomics and Pathogenesis. Horizon Bioscience, United Kingdom, England, Norfolk, pp. 133-156.
Journal Article
Timms, Peter, Good, David, Wan, Charles, Theodoropoulos, Christina, Mukhopadhyay, Sanghamitra, Summersgill, James, et al. (2009) Differential transcriptional responses between the interferon-gamma-induction and iron-limitation models of persistence for Chlamydia pneumoniae. Journal of Microbiology Immunology and Infection, 42(1), pp. 27-37.
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7Myers, G. S. A., Mathews, S. A., Eppinger, M., Mitchell, C. M., O'Brien, K. K., White, O. R., et al. (2009) Evidence that human chlamydia pneumoniae was zoonotically acquired. Journal of Bacteriology, 191(23), pp. 7225-7233.
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15Huston, Wilhelmina M., Theodoropoulos, Christina, Mathews, Sarah A., & Timms, Peter (2008) Chlamydia trachomatis responds to heat shock, penicillin induced persistence, and IFN-gamma persistence by altering levels of the extracytoplasmic stress response protease HtrA. BMC Microbiology, 8, p. 190.
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11Mitchell, Candice M., Mathews, Sarah A., Theodoropoulos, Christina, & Timms, Peter (2008) In vitro characterisation of koala Chlamydia pneumoniae: Morphology, inclusion development and doubling time. Veterinary Microbiology, 1-2, pp. 91-99.
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5Towsey, Michael W., Timms, Peter, Hogan, James M., & Mathews, Sarah A. (2008) The cross-species prediction of bacterial promoters using a support vector machine. Computational Biology and Chemistry, 32(5), pp. 359-366.
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1Grech, Brian J., Mathews, Sarah A., & Timms, Peter (2008) Phylogenetic comparison of the known Chlamydia trachomatis σ66 promoters across to Chlamydia pneumoniae and Chlamydia caviae identifies seven poorly conserved promoters. Research in Microbiology, 159(7-8), pp. 550-556.
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1Grech, Brian J., Maetschke, Stefan, Mathews, Sarah A., & Timms, Peter (2007) Genome-wide analysis of chlamydiae for promoters that phylogenetically footprint. Research in Microbiology, 158(8-9), pp. 685-693.
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5Huston, Wilhelmina M., Swedberg, Joaquim E., Harris, Jonathan M., Walsh, Terence P., Mathews, Sarah A., & Timms, Peter (2007) The temperature activated HtrA protease from pathogen Chlamydia trachomatis acts as both a chaperone and protease at 37°C . FEBS Letters, 581, pp. 3382-3386.
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12Good, David A., Mukhopadhyay, Sanghamitra, Miller, Richard D., Mathews, Sarah A., Graham, James E., Timms, Peter, et al. (2006) Identification of Chlamydia pneumoniae proteins in the transition from reticulate to elementary body formation. Molecular and Cellular Proteomics, 5(12), pp. 2311-2318.
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6Gordon, John J., Towsey, Michael W., Hogan, James M., Mathews, Sarah A., & Timms, Peter (2006) Improved prediction of bacterial transcription start sites. Bioinformatics, 22(2), pp. 142-148.
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29Mathews, Sarah, Miller, Richard, Mukhopadhyay, Sanghamitra, Sullivan, Erin, Summersgill, James, Theodoropoulos, Christina, et al. (2006) Protein Expression Profiles of Chlamydia Pneumoniae in Models of Persistence Versus Those of Heat Shock Stress Response. Infection and Immunity, 74(7), pp. 3853-3863.
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23Hogan, Richard J., Mathews, Sarah A., Mukhopadhyay, Sanghamitra, Summersgill, James T., & Timms, Peter (2004) Chlamydial Persistence: beyond the Biphasic Paradigm. Infection and Immunity, 72(4), pp. 1843-1855.
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166Hogan, Richard J., Mathews, Sarah A., Kutlin, Andrei, Hammerschlag, Margaret R., & Timms, Peter (2003) Differential expression of genes encoding membrane proteins between acute and continuous Chlamydia pneumoniae infections. Microbial Pathogenesis, 34(1), pp. 11-16.
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25Kutlin, Andrei, Flegg, Cameron, Stenzel, Deborah J., Reznik, Tamara, Roblin, Patricia M., Mathews, Sarah A., et al. (2001) Ultrastructural Study of Chlamydia pneumoniae In a Continuous-Infection Model. Journal of Clinical Microbiology, 39(10), pp. 3721-3723.
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36Mathews, Sarah A., George, Carmel, Flegg, Cameron, Stenzel, Deborah J., & Timms, Peter (2001) Differential expression of ompA, ompB, pyk, nlpD and Cpn0585 genes between normal and interferon-gamma treated cultures of Chlamydia pneumoniae. Microbial Pathogenesis, 30(6), pp. 337-345.
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39Volp, Kym M., Mathews, Sarah A., Timms, Peter, & Hafner, Louise M. (2001) Peptide immunization of guinea pigs against Chlamydia psittaci (GPIC agent) infection induces good vaginal secretion antibody response, in vitro neutralization and partial protection against live challenge. Immunology and Cell Biology, 79(3), pp. 245-250.
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4Conference Paper
Towsey, Michael W., Hogan, James M., Mathews, Sarah A., & Timms, Peter (2007) The In Silico Prediction of Promoters in Bacterial Genomes. In Ng, See-Kiong, Mamitsuka, Hiroshi, & Wong, Limsoon (Eds.) Genome Informatics Workshop 2007, 3rd - 5th December 2007, Singapore.
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