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Science Translational Medicine|September 8, 2012
Bridging the gap between a TB drug and its targetGregory M Cook, Adam HeikalJournal of Microbiological Methods|November 24, 2015
Comparison of lipid and detergent enzyme environments for identifying inhibitors of membrane-bound energy-transducing proteinsElyse A Dunn, Gregory M Cook, Adam HeikalData in Brief|February 11, 2016
Annotated compound data for modulators of detergent-solubilised or lipid-reconstituted respiratory type II NADH dehydrogenase activity obtained by compound library screeningElyse A Dunn, Gregory M Cook, Adam HeikalMolecular Microbiology|April 18, 2012
Regulation of proline metabolism in mycobacteria and its role in carbon metabolism under hypoxiaMichael Berney, Marion R Weimar, Adam Heikal, et al.The Journal of Antimicrobial Chemotherapy|July 2, 2016
Activation of type II NADH dehydrogenase by quinolinequinones mediates antitubercular cell deathAdam Heikal, Kiel Hards, Chen-Yi Cheung, et al.Scientific Reports|January 10, 2017
The mechanism of catalysis by type-II NADH:quinone oxidoreductasesJames N Blaza, Hannah R Bridges, David Aragão, et al.Bioorganic & Medicinal Chemistry Letters|June 4, 2018
'Tethering' fragment-based drug discovery to identify inhibitors of the essential respiratory membrane protein type II NADH dehydrogenaseAdam Heikal, Yoshio Nakatani, Wanting Jiao, et al.Genome Announcements|March 3, 2018
Complete Genome Sequence of a New Zealand Isolate of the Bovine Pathogen Streptococcus uberisGeorge Taiaroa, Nichaela Harbison-Price, Scott A Ferguson, et al.Bioorganic & Medicinal Chemistry|August 24, 2014
Incorporation of triphenylphosphonium functionality improves the inhibitory properties of phenothiazine derivatives in Mycobacterium tuberculosisElyse A Dunn, Marina Roxburgh, Lesley Larsen, et al.Molecular Microbiology|January 22, 2014
Structure of the bacterial type II NADH dehydrogenase: a monotopic membrane protein with an essential role in energy generationAdam Heikal, Yoshio Nakatani, Elyse Dunn, et al.Pageof 25