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Biochemistry|July 1, 2016
Structure and Function of Four Classes of the 4Fe-4S Protein, IspHGuodong Rao, Eric OldfieldInorganic Chemistry|August 15, 2018
Electronic Structure of Two Catalytic States of the [FeFe] Hydrogenase H-Cluster As Probed by Pulse Electron Paramagnetic Resonance SpectroscopyGuodong Rao, R David BrittBiology Open|May 25, 2016
Metabolomics reveals significant variations in metabolites and correlations regarding the maturation of walnuts (Juglans regia L.)Guodong Rao, Jinkai Sui, Jianguo ZhangJournal of Inorganic Biochemistry|December 20, 2025
Deciphering Cu(II) EPR in biological buffers: Implications for copper protein studiesGuodong Rao, Lizhi Tao, R David BrittApplied Microbiology and Biotechnology|January 30, 2013
Directed evolution of phloroglucinol synthase PhlD with increased stability for phloroglucinol productionGuodong Rao, Jung-Kul Lee, Huimin ZhaoNature Reviews. Chemistry|April 8, 2021
Bioassembly of complex iron-sulfur enzymes: hydrogenases and nitrogenasesR David Britt, Guodong Rao, Lizhi TaoChemical Science|June 14, 2021
Biosynthesis of the catalytic H-cluster of [FeFe] hydrogenase: the roles of the Fe-S maturase proteins HydE, HydF, and HydGR David Britt, Guodong Rao, Lizhi TaoChemical Science|June 14, 2021
Serine is the molecular source of the NH(CH2)2 bridgehead moiety of the in vitro assembled [FeFe] hydrogenase H-clusterGuodong Rao, Lizhi Tao, R David BrittScientific Reports|January 13, 2016
Characterization and putative post-translational regulation of α- and β-tubulin gene families in Salix arbutifoliaGuodong Rao, Yanfei Zeng, Caiyun He, et al.Accounts of Chemical Research|June 27, 2024
The H-cluster of [FeFe] Hydrogenases: Its Enzymatic Synthesis and Parallel Inorganic SemisynthesisR David Britt, Thomas B Rauchfuss, Guodong RaoPageof 7