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Methods in Molecular Biology (Clifton, N.J.)|March 18, 2015
Construction of conditional knockdown mutants in mycobacteriaDirk Schnappinger, Kathryn M O'Brien, Sabine Ehrt
Biorxiv : the Preprint Server for Biology|April 24, 2023
Synthetic lethality of Mycobacterium tuberculosis NADH dehydrogenases is due to impaired NADH oxidationYuanyuan Xu, Sabine Ehrt, Dirk Schnappinger, et al.
Nature Communications|March 29, 2017
Depleting Mycobacterium tuberculosis of the transcription termination factor Rho causes pervasive transcription and rapid deathLaure Botella, Julien Vaubourgeix, Jonathan Livny, et al.
Mbio|November 30, 2023
Synthetic lethality of Mycobacterium tuberculosis NADH dehydrogenases is due to impaired NADH oxidationYuanyuan Xu, Sabine Ehrt, Dirk Schnappinger, et al.
Plos One|January 5, 2011
Simultaneous analysis of multiple Mycobacterium tuberculosis knockdown mutants in vitro and in vivoAntje Blumenthal, Carolina Trujillo, Sabine Ehrt, et al.
Nucleic Acids Research|June 12, 2003
Single-chain Tet transregulatorsChristel Krueger, Christian Berens, Andreas Schmidt, et al.
Nature Medicine|December 7, 2007
In vivo gene silencing identifies the Mycobacterium tuberculosis proteasome as essential for the bacteria to persist in miceSheetal Gandotra, Dirk Schnappinger, Mercedes Monteleone, et al.
Annals of the New York Academy of Sciences|April 10, 2024
Weak links: Advancing target-based drug discovery by identifying the most vulnerable targetsBarbara Bosch, Michael A DeJesus, Dirk Schnappinger, et al.
Proceedings of the National Academy of Sciences of the United States of America|May 5, 2010
Gluconeogenic carbon flow of tricarboxylic acid cycle intermediates is critical for Mycobacterium tuberculosis to establish and maintain infectionJoeli Marrero, Kyu Y Rhee, Dirk Schnappinger, et al.
Elife|November 22, 2019
Persistent Mycobacterium tuberculosis infection in mice requires PerM for successful cell divisionRuojun Wang, Kaj Kreutzfeldt, Helene Botella, et al.
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