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Journal of Bacteriology|July 17, 2023
Model Organisms To Study Methanogenesis, a Uniquely Archaeal MetabolismKyle C Costa, William B WhitmanJournal of Bacteriology|January 1, 1987
Inhibition by corrins of the ATP-dependent activation and CO2 reduction by the methylreductase system in Methanobacterium bryantiiW B Whitman, R S WolfeAnalytical Biochemistry|February 1, 1984
Purification and analysis of cobamides of Methanobacterium bryantii by high-performance liquid chromatographyW B Whitman, R S WolfeBiochemistry|April 4, 1978
Modification of Rhodospirillum rubrum ribulose bisphosphate carboxylase with pyridoxal phosphate. 1. Identification of a lysyl residue at the active siteW B Whitman, F R TabitaJournal of Bacteriology|January 1, 1992
Characterization of amino acid aminotransferases of Methanococcus aeolicusR Y Xing, W B WhitmanJournal of Labelled Compounds & Radiopharmaceuticals|November 15, 2018
An efficient method for synthesizing dimethylsulfonio-34 S-propionate hydrochloride from 34 S8Joseph S Wirth, William B WhitmanMolecular Microbiology|July 20, 1999
Genetics of Methanococcus: possibilities for functional genomics in ArchaeaD L Tumbula, W B WhitmanGenetics|August 3, 1999
Expression vectors for Methanococcus maripaludis: overexpression of acetohydroxyacid synthase and beta-galactosidaseW L Gardner, W B WhitmanJournal of Bacteriology|May 1, 1983
Activation of the methylreductase system from Methanobacterium bryantii by ATPW B Whitman, R S WolfeSystematic and Applied Microbiology|July 19, 2018
Dialogue on the nomenclature and classification of prokaryotesRamon Rosselló-Móra, William B WhitmanPageof 33