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The Journal of Organic Chemistry|December 7, 2002
Rapid one-pot synthesis of riboflavin isotopomersWerner Römisch, Wolfgang Eisenreich, Gerald Richter, et al.Journal of Molecular Biology|August 21, 2003
The structure of the N-terminal domain of riboflavin synthase in complex with riboflavin at 2.6A resolutionWinfried Meining, Sabine Eberhardt, Adelbert Bacher, et al.Journal of Medicinal Chemistry|October 4, 2002
Biosynthesis of hyperforin in Hypericum perforatumPetra Adam, Duilio Arigoni, Adelbert Bacher, et al.The Journal of Biological Chemistry|November 8, 2005
Crystal structure of an archaeal pentameric riboflavin synthase in complex with a substrate analog inhibitor: stereochemical implicationsArne Ramsperger, Martin Augustin, Ann-Kathrin Schott, et al.Chemical Science|August 7, 2018
Aryl bis-sulfonamides bind to the active site of a homotrimeric isoprenoid biosynthesis enzyme IspF and extract the essential divalent metal cation cofactorKatharina Root, Konstantin Barylyuk, Anatol Schwab, et al.Journal of Biochemistry and Molecular Biology|March 31, 2007
Ligand binding properties of the N-terminal domain of riboflavin synthase from Escherichia coliChan Yong Lee, Boris Illarionov, Young-Eun Woo, et al.Biochemistry|January 1, 2009
(15)N{(31)P} REDOR NMR studies of the binding of phosphonate reaction intermediate analogues to Saccharomyces cerevisiae lumazine synthaseTsyr-Yan Yu, Robert D O'Connor, Astrid C Sivertsen, et al.The Journal of Organic Chemistry|March 14, 2007
A novel lumazine synthase inhibitor derived from oxidation of 1,3,6,8-tetrahydroxy-2,7-naphthyridine to a tetraazaperylenehexaone derivativeYanlei Zhang, Boris Illarionov, Adelbert Bacher, et al.BMC Biochemistry|December 24, 2003
Riboflavin synthase of Schizosaccharomyces pombe. Protein dynamics revealed by 19F NMR protein perturbation experimentsMarkus Fischer, Ann-Kathrin Schott, Kristina Kemter, et al.Proceedings of the National Academy of Sciences of the United States of America|September 11, 2002
Folate synthesis in plants: the first step of the pterin branch is mediated by a unique bimodular GTP cyclohydrolase IGilles Basset, Eoin P Quinlivan, Michael J Ziemak, et al.Pageof 56