Scot P. Ouellette, Ph.D.
Affiliations: | 2006 | University of Tennessee Health Science Center, Memphis, TN, United States |
Area:
Microbiology BiologyGoogle:
"Scot Ouellette"Parents
Sign in to add mentorGerald I. Byrne | grad student | 2006 | UTHSC | |
(Chlamydial gene expression and translation during productive and non-productive growth.) |
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Publications
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Riffaud CM, Rucks EA, Ouellette SP. (2023) Persistence of obligate intracellular pathogens: alternative strategies to overcome host-specific stresses. Frontiers in Cellular and Infection Microbiology. 13: 1185571 |
Swoboda AR, Wood NA, Saery EA, et al. (2023) The Periplasmic Tail-Specific Protease, Tsp, Is Essential for Secondary Differentiation in . Journal of Bacteriology. e0009923 |
Pan S, Jensen AA, Wood NA, et al. (2023) Molecular Characterization of the ClpC AAA+ ATPase in the Biology of Chlamydia trachomatis. Mbio. e0007523 |
Wood NA, Blocker AM, Seleem MA, et al. (2020) The ClpX and ClpP2 Orthologs of Chlamydia trachomatis Perform Discrete and Essential Functions in Organism Growth and Development. Mbio. 11 |
Cox JV, Abdelrahman YM, Ouellette SP. (2020) Penicillin-binding proteins regulate multiple steps in the polarized cell division process of Chlamydia. Scientific Reports. 10: 12588 |
Ouellette SP, Lee J, Cox JV. (2020) Division without Binary Fission: Cell Division in the FtsZ-Less . Journal of Bacteriology |
Seleem MA, Rodrigues de Almeida N, Chhonker YSS, et al. (2020) Synthesis and Antichlamydial Activity of Molecules Based on Dysregulators of Cylindrical Proteases. Journal of Medicinal Chemistry |
Lee J, Cox JV, Ouellette SP. (2020) Critical Role for the Extended N-Terminus of Chlamydial MreB in Directing Its Membrane Association and Potential Interaction with Divisome Proteins. Journal of Bacteriology |
Hatch ND, Ouellette SP. (2020) Inhibition of tRNA Synthetases Induces Persistence in . Infection and Immunity |
Olson MG, Ouellette SP, Rucks EA. (2019) A meta-analysis of affinity purification-mass spectrometry experimental systems used to identify eukaryotic and chlamydial proteins at the Chlamydia trachomatis inclusion membrane. Journal of Proteomics. 212: 103595 |