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Biochemistry|November 17, 2007
Substrate recognition and catalysis by the cofactor-independent dioxygenase DpgCElisha N Fielding, Paul F Widboom, Steven D BrunerNature|May 18, 2007
Structural basis for cofactor-independent dioxygenation in vancomycin biosynthesisPaul F Widboom, Elisha N Fielding, Ye Liu, et al.Proceedings of the National Academy of Sciences of the United States of America|October 4, 2008
Structure elucidation and biosynthesis of fuscachelins, peptide siderophores from the moderate thermophile Thermobifida fuscaEric J Dimise, Paul F Widboom, Steven D BrunerActa Crystallographica. Section D, Structural Biology|July 12, 2017
Probing the structural basis of oxygen binding in a cofactor-independent dioxygenaseKunhua Li, Elisha N Fielding, Heather L Condurso, et al.Biochemistry|May 4, 2021
Structural Basis for the Interactions of the Colibactin Resistance Gene Product ClbS with DNAPrabhanshu Tripathi, Steven D BrunerProteins|November 6, 2015
Structure and functional analysis of the siderophore periplasmic binding protein from the fuscachelin gene cluster of Thermobifida fuscaKunhua Li, Steven D BrunerBiochemistry|September 25, 2010
Prephenate decarboxylases: a new prephenate-utilizing enzyme family that performs nonaromatizing decarboxylation en route to diverse secondary metabolitesSarah Mahlstedt, Elisha N Fielding, Bradley S Moore, et al.Natural Product Reports|July 30, 2016
Structural and mechanistic diversity of multidrug transportersJarrod J Mousa, Steven D BrunerNatural Product Reports|June 26, 2012
Structure and noncanonical chemistry of nonribosomal peptide biosynthetic machineryHeather L Condurso, Steven D BrunerCurrent Opinion in Chemical Biology|February 29, 2012
Structure guided approaches toward exploiting and manipulating nonribosomal peptide and polyketide biosynthetic pathwaysHeather L Condurso, Steven D BrunerPageof 8