Klebsiella pneumoniae

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Tang, S., Conte, V., Zhang, D. J., Žedaveinytė, R., Lampe, G. D., Wiegand, T., Tang, L. C., Wang, M., Walker, M. W. G., George, J. T., Berchowitz, L. E., Jovanovic, M., & Sternberg, S. H. (2024). De novo gene synthesis by an antiviral reverse transcriptase. Science, 386(6717). https://doi.org/10.1126/science.adq0876
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Bhushan, G., Castano, V., Wong Fok Lung, T., Chandler, C., McConville, T. H., Ernst, R. K., Prince, A. S., & Ahn, D. (2024). Lipid A modification of colistin-resistant Klebsiella pneumoniae does not alter innate immune response in a mouse model of pneumonia. Infection and Immunity, 92(6). https://doi.org/10.1128/iai.00016-24
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Wong Fok Lung, T., Charytonowicz, D., Beaumont, K. G., Shah, S. S., Sridhar, S. H., Gorrie, C. L., Mu, A., Hofstaedter, C. E., Varisco, D., McConville, T. H., Drikic, M., Fowler, B., Urso, A., Shi, W., Fucich, D., Annavajhala, M. K., Khan, I. N., Oussenko, I., Francoeur, N., … Prince, A. (2022). Klebsiella pneumoniae induces host metabolic stress that promotes tolerance to pulmonary infection. Cell Metabolism, 34(5), 761-774.e9. https://doi.org/10.1016/j.cmet.2022.03.009
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