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Open Biology|June 27, 2019
Structure of F1-ATPase from the obligate anaerobe Fusobacterium nucleatumJessica Petri, Yoshio Nakatani, Martin G Montgomery, et al.Microbiology Spectrum|June 10, 2017
Oxidative Phosphorylation as a Target Space for Tuberculosis: Success, Caution, and Future DirectionsGregory M Cook, Kiel Hards, Elyse Dunn, et al.Frontiers in Microbiology|September 27, 2019
Microtiter Screening Reveals Oxygen-Dependent Antimicrobial Activity of Natural Products Against Mastitis-Causing BacteriaScott A Ferguson, Ayana Menorca, Essie M Van Zuylen, et al.Genome Announcements|July 8, 2017
Complete Genome Sequence of a Multidrug-Resistant, blaNDM-1-Expressing Klebsiella pneumoniae K66-45 Clinical Isolate from NorwayAdam Heikal, Ørjan Samuelsen, Tom Kristensen, et al.Advances in Microbial Physiology|November 3, 2004
Bacterial Na+ - or H+ -coupled ATP synthases operating at low electrochemical potentialPeter Dimroth, Gregory M CookJournal of Bacteriology|December 18, 2007
Differential regulation of high-affinity phosphate transport systems of Mycobacterium smegmatis: identification of PhnF, a repressor of the phnDCE operonSusanne Gebhard, Gregory M CookPlos One|January 12, 2010
Unique flexibility in energy metabolism allows mycobacteria to combat starvation and hypoxiaMichael Berney, Gregory M CookData in Brief|December 13, 2016
Microarray dataset on the genome-wide expression profile of an M. smegmatis amtR mutant (JR258) compared to M. smegmatis mc2155Michael Petridis, Gregory M CookDrug Resistance Updates : Reviews and Commentaries in Antimicrobial and Anticancer Chemotherapy|March 4, 2018
Targeting bacterial energetics to produce new antimicrobialsKiel Hards, Gregory M CookCurrent Opinion in Microbiology|March 11, 2014
Integration of hydrogenase expression and hydrogen sensing in bacterial cell physiologyChris Greening, Gregory M CookPageof 25