Michael J. McInerney

Affiliations: 
University of Oklahoma, Norman, OK, United States 
Area:
Microbiology Biology
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"Michael McInerney"
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Muroski JM, Fu JY, Nguyen HH, et al. (2022) The acyl-proteome of Syntrophus aciditrophicus reveals metabolic relationships in benzoate degradation. Molecular & Cellular Proteomics : McP. 100215
Nobu MK, Narihiro T, Mei R, et al. (2020) Catabolism and interactions of uncultured organisms shaped by eco-thermodynamics in methanogenic bioprocesses. Microbiome. 8: 111
Losey NA, Poudel S, Boyd ES, et al. (2020) The Beta Subunit of Non-bifurcating NADH-Dependent [FeFe]-Hydrogenases Differs From Those of Multimeric Electron-Bifurcating [FeFe]-Hydrogenases. Frontiers in Microbiology. 11: 1109
Walker DJF, Nevin KP, Holmes DE, et al. (2020) Syntrophus conductive pili demonstrate that common hydrogen-donating syntrophs can have a direct electron transfer option. The Isme Journal
James KL, Kung JW, Crable BR, et al. (2019) Syntrophus aciditrophicus uses the same enzymes in a reversible manner to degrade and synthesize aromatic and alicyclic acids. Environmental Microbiology
Cook LE, Gang SS, Ihlan A, et al. (2018) Genome Sequence of Acetomicrobium hydrogeniformans OS1. Genome Announcements. 6
Losey NA, Mus F, Peters JW, et al. (2017) Syntrophomonas wolfei Uses a NADH-Dependent, Ferredoxin-Independent, [FeFe]-Hydrogenase to Reoxidize NADH. Applied and Environmental Microbiology
Dong Y, Sanford RA, Chang YJ, et al. (2016) Hematite Reduction Buffers Acid Generation and Enhances Nutrient Uptake by a Fermentative Iron Reducing Bacterium, Orenia metallireducens Strain Z6. Environmental Science & Technology
Crable BR, Sieber JR, Mao X, et al. (2016) Membrane Complexes of Syntrophomonas wolfei Involved in Syntrophic Butyrate Degradation and Hydrogen Formation. Frontiers in Microbiology. 7: 1795
James KL, Ríos-Hernández LA, Wofford NQ, et al. (2016) Pyrophosphate-Dependent ATP Formation from Acetyl Coenzyme A in Syntrophus aciditrophicus, a New Twist on ATP Formation. Mbio. 7
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