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Frontiers in Cellular and Infection Microbiology
|
November 3, 2022
Unraveling the mechanisms of intrinsic drug resistance in <i>Mycobacterium tuberculosis</i>
Nicholas C Poulton, Jeremy M Rock
Antimicrobial Agents and Chemotherapy
|
August 3, 2022
Mutations in <i>rv0678</i> Confer Low-Level Resistance to Benzothiazinone DprE1 Inhibitors in Mycobacterium tuberculosis
Nicholas C Poulton, Zachary A Azadian, Michael A DeJesus, et al.
Science Advances
|
May 4, 2022
The essential <i>M. tuberculosis</i> Clp protease is functionally asymmetric in vivo
Felipe B d'Andrea, Nicholas C Poulton, Ruby Froom, et al.
Biorxiv : the Preprint Server for Biology
|
June 19, 2023
Beyond antibiotic resistance: the <i>whiB7</i> transcription factor coordinates an adaptive response to alanine starvation in mycobacteria
Nicholas C Poulton, Michael A DeJesus, Vanisha Munsamy-Govender, et al.
Cell Chemical Biology
|
January 24, 2024
Beyond antibiotic resistance: The whiB7 transcription factor coordinates an adaptive response to alanine starvation in mycobacteria
Nicholas C Poulton, Michael A DeJesus, Vanisha Munsamy-Govender, et al.
Elife
|
February 22, 2023
Cyclic AMP is a critical mediator of intrinsic drug resistance and fatty acid metabolism in <i>M. tuberculosis</i>
Andrew I Wong, Tiago Beites, Kyle A Planck, et al.
Nature
|
March 21, 2024
Compensatory evolution in NusG improves fitness of drug-resistant M. tuberculosis
Kathryn A Eckartt, Madeleine Delbeau, Vanisha Munsamy-Govender, et al.
Cell
|
July 23, 2021
Genome-wide gene expression tuning reveals diverse vulnerabilities of M. tuberculosis
Barbara Bosch, Michael A DeJesus, Nicholas C Poulton, et al.
Nature Microbiology
|
May 31, 2022
CRISPRi chemical genetics and comparative genomics identify genes mediating drug potency in Mycobacterium tuberculosis
Shuqi Li, Nicholas C Poulton, Jesseon S Chang, et al.
Nature
|
July 1, 2026
Identification of cross-stage, cross-species malaria CD8<sup>+</sup> T cell antigens
Camila R R Barbosa, Luna B de Lacerda, Paulo J G Bettencourt, et al.
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of 1
Search research articles
Search
Showing results (1-10 of 10) with videos related to
Sort By:
Page
of 1
Frontiers in Cellular and Infection Microbiology
|
November 3, 2022
Unraveling the mechanisms of intrinsic drug resistance in <i>Mycobacterium tuberculosis</i>
Nicholas C Poulton, Jeremy M Rock
Antimicrobial Agents and Chemotherapy
|
August 3, 2022
Mutations in <i>rv0678</i> Confer Low-Level Resistance to Benzothiazinone DprE1 Inhibitors in Mycobacterium tuberculosis
Nicholas C Poulton, Zachary A Azadian, Michael A DeJesus, et al.
Science Advances
|
May 4, 2022
The essential <i>M. tuberculosis</i> Clp protease is functionally asymmetric in vivo
Felipe B d'Andrea, Nicholas C Poulton, Ruby Froom, et al.
Biorxiv : the Preprint Server for Biology
|
June 19, 2023
Beyond antibiotic resistance: the <i>whiB7</i> transcription factor coordinates an adaptive response to alanine starvation in mycobacteria
Nicholas C Poulton, Michael A DeJesus, Vanisha Munsamy-Govender, et al.
Cell Chemical Biology
|
January 24, 2024
Beyond antibiotic resistance: The whiB7 transcription factor coordinates an adaptive response to alanine starvation in mycobacteria
Nicholas C Poulton, Michael A DeJesus, Vanisha Munsamy-Govender, et al.
Elife
|
February 22, 2023
Cyclic AMP is a critical mediator of intrinsic drug resistance and fatty acid metabolism in <i>M. tuberculosis</i>
Andrew I Wong, Tiago Beites, Kyle A Planck, et al.
Nature
|
March 21, 2024
Compensatory evolution in NusG improves fitness of drug-resistant M. tuberculosis
Kathryn A Eckartt, Madeleine Delbeau, Vanisha Munsamy-Govender, et al.
Cell
|
July 23, 2021
Genome-wide gene expression tuning reveals diverse vulnerabilities of M. tuberculosis
Barbara Bosch, Michael A DeJesus, Nicholas C Poulton, et al.
Nature Microbiology
|
May 31, 2022
CRISPRi chemical genetics and comparative genomics identify genes mediating drug potency in Mycobacterium tuberculosis
Shuqi Li, Nicholas C Poulton, Jesseon S Chang, et al.
Nature
|
July 1, 2026
Identification of cross-stage, cross-species malaria CD8<sup>+</sup> T cell antigens
Camila R R Barbosa, Luna B de Lacerda, Paulo J G Bettencourt, et al.
Page
of 1