Found 53 results
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Journal Article
D. D. Rockey, Chesebro, B. B., Heinzen, R. A., and Hackstadt, T., A 28 kDa major immunogen of Chlamydia psittaci shares identity with Mip proteins of Legionella spp. and Chlamydia trachomatis-cloning and characterization of the C. psittaci mip-like gene., Microbiology (Reading, England), vol. 142 ( Pt 4), pp. 945-53, 1996.
P. A. Beare, Sandoz, K. M., Omsland, A., Rockey, D. D., and Heinzen, R. A., Advances in genetic manipulation of obligate intracellular bacterial pathogens., Frontiers in microbiology, vol. 2, p. 97, 2011.
J. - R. Xu, Bently, J., Beck, L., Reed, A., Miller-Morgan, T. J., Heidel, J. R., Kent, M. L., Rockey, D. D., and Jin, L., Analysis of koi herpesvirus latency in wild common carp and ornamental koi in Oregon, USA., Journal of virological methods, vol. 187, no. 2, pp. 372-9, 2013.
J. - R. Xu, Bently, J., Beck, L., Reed, A., Miller-Morgan, T., Heidel, J. R., Kent, M. L., Rockey, D. D., and Jin, L., Analysis of koi herpesvirus latency in wild common carp and ornamental koi in Oregon, USA., Journal of virological methods, vol. 187, no. 2, pp. 372-9, 2013.
J. - R. Xu, Bently, J., Beck, L., Reed, A., Miller-Morgan, T. J., Heidel, J. R., Kent, M. L., Rockey, D. D., and Jin, L., Analysis of koi herpesvirus latency in wild common carp and ornamental koi in Oregon, USA., Journal of virological methods, vol. 187, no. 2, pp. 372-9, 2013.
B. Babra, Watson, G., Xu, W., Jeffrey, B. M., Xu, J. - R., Rockey, D. D., Rohrmann, G. F., and Jin, L., Analysis of the genome of leporid herpesvirus 4., Virology, vol. 433, no. 1, pp. 183-91, 2012.
K. M. Sandoz and Rockey, D. D., Antibiotic resistance in Chlamydiae., Future microbiology, vol. 5, no. 9, pp. 1427-42, 2010.
D. D. Rockey, Grosenbach, D., Hruby, D. E., Peacock, M. G., Heinzen, R. A., and Hackstadt, T., Chlamydia psittaci IncA is phosphorylated by the host cell and is exposed on the cytoplasmic face of the developing inclusion., Molecular microbiology, vol. 24, no. 1, pp. 217-28, 1997.
J. P. Bannantine, Stamm, W. E., Suchland, R. J., and Rockey, D. D., Chlamydia trachomatis IncA is localized to the inclusion membrane and is recognized by antisera from infected humans and primates., Infection and immunity, vol. 66, no. 12, pp. 6017-21, 1998.
T. Hackstadt, Rockey, D. D., Heinzen, R. A., and Scidmore, M. A., Chlamydia trachomatis interrupts an exocytic pathway to acquire endogenously synthesized sphingomyelin in transit from the Golgi apparatus to the plasma membrane., The EMBO journal, vol. 15, no. 5, pp. 964-77, 1996.
M. Xia, Suchland, R. J., Bumgarner, R. E., Peng, T., Rockey, D. D., and Stamm, W. E., Chlamydia trachomatis variant with nonfusing inclusions: growth dynamic and host-cell transcriptional response., The Journal of infectious diseases, vol. 192, no. 7, pp. 1229-36, 2005.
D. D. Rockey, Wang, J., Lei, L., and Zhong, G., Chlamydia vaccine candidates and tools for chlamydial antigen discovery., Expert review of vaccines, vol. 8, no. 10, pp. 1365-77, 2009.
W. J. Brown, Skeiky, Y. A. W., Probst, P., and Rockey, D. D., Chlamydial antigens colocalize within IncA-laden fibers extending from the inclusion membrane into the host cytosol., Infection and immunity, vol. 70, no. 10, pp. 5860-4, 2002.
D. Alzhanov, Barnes, J., Hruby, D. E., and Rockey, D. D., Chlamydial development is blocked in host cells transfected with Chlamydophila caviae incA., BMC microbiology, vol. 4, p. 24, 2004.
D. T. Alzhanov, Suchland, R. J., Bakke, A. C., Stamm, W. E., and Rockey, D. D., Clonal isolation of chlamydia-infected cells using flow cytometry., Journal of microbiological methods, vol. 68, no. 1, pp. 201-8, 2007.
D. D. Rockey, Heinzen, R. A., and Hackstadt, T., Cloning and characterization of a Chlamydia psittaci gene coding for a protein localized in the inclusion membrane of infected cells., Molecular microbiology, vol. 15, no. 4, pp. 617-26, 1995.
L. Giacani, Jeffrey, B. M., Molini, B. J., Le, H. V. T., Lukehart, S. A., Centurion-Lara, A., and Rockey, D. D., Complete genome sequence and annotation of the Treponema pallidum subsp. pallidum Chicago strain., Journal of bacteriology, vol. 192, no. 10, pp. 2645-6, 2010.
T. E. Putman, Suchland, R. J., Ivanovitch, J. D., and Rockey, D. D., Culture-independent sequence analysis of Chlamydia trachomatis in urogenital specimens identifies regions of recombination and in-patient sequence mutations., Microbiology (Reading, England), vol. 159, no. Pt 10, pp. 2109-17, 2013.
D. T. Alzhanov, Weeks, S. K., Burnett, J. R., and Rockey, D. D., Cytokinesis is blocked in mammalian cells transfected with Chlamydia trachomatis gene CT223., BMC microbiology, vol. 9, p. 2, 2009.
R. J. Suchland, Rockey, D. D., Weeks, S. K., Alzhanov, D. T., and Stamm, W. E., Development of secondary inclusions in cells infected by Chlamydia trachomatis., Infection and immunity, vol. 73, no. 7, pp. 3954-62, 2005.
R. A. Heinzen, Scidmore, M. A., Rockey, D. D., and Hackstadt, T., Differential interaction with endocytic and exocytic pathways distinguish parasitophorous vacuoles of Coxiella burnetii and Chlamydia trachomatis., Infection and immunity, vol. 64, no. 3, pp. 796-809, 1996.
D. D. Rockey, Viratyosin, W., Bannantine, J. P., Suchland, R. J., and Stamm, W. E., Diversity within inc genes of clinical Chlamydia trachomatis variant isolates that occupy non-fusogenic inclusions., Microbiology (Reading, England), vol. 148, no. Pt 8, pp. 2497-505, 2002.
W. M. Geisler, Suchland, R. J., Rockey, D. D., and Stamm, W. E., Epidemiology and clinical manifestations of unique Chlamydia trachomatis isolates that occupy nonfusogenic inclusions., The Journal of infectious diseases, vol. 184, no. 7, pp. 879-84, 2001.
L. Giacani, Chattopadhyay, S., Centurion-Lara, A., Jeffrey, B. M., Le, H. V. T., Molini, B. J., Lukehart, S. A., Sokurenko, E. V., and Rockey, D. D., Footprint of Positive Selection in Treponema pallidum subsp. pallidum Genome Sequences Suggests Adaptive Microevolution of the Syphilis Pathogen., PLoS neglected tropical diseases, vol. 6, no. 6, p. e1698, 2012.
J. Dugan, Andersen, A. A., and Rockey, D. D., Functional characterization of IScs605, an insertion element carried by tetracycline-resistant Chlamydia suis., Microbiology (Reading, England), vol. 153, no. Pt 1, pp. 71-9, 2007.

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