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Catalysis Letters|October 29, 2015
EPR Spectroscopic Studies of [FeFe]-Hydrogenase MaturationDaniel L M Suess, R David BrittBiochemistry|March 8, 2006
The 33 kDa protein can be removed without affecting the association of the 23 and 17 kDa proteins with the luminal side of PS II of spinachHui Yu, Xianzhong Xu, R David BrittJournal of Inorganic Biochemistry|December 20, 2025
Deciphering Cu(II) EPR in biological buffers: Implications for copper protein studiesGuodong Rao, Lizhi Tao, R David BrittProceedings of the National Academy of Sciences of the United States of America|August 20, 2008
Metal-organic frameworks with high capacity and selectivity for harmful gasesDavid Britt, David Tranchemontagne, Omar M YaghiChemical 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(CH<sub>2</sub>)<sub>2</sub> bridgehead moiety of the <i>in vitro</i> assembled [FeFe] hydrogenase H-clusterGuodong Rao, Lizhi Tao, R David BrittPhotosynthesis Research|January 18, 2023
Mutation of a metal ligand stabilizes the high-spin form of the S<sub>2</sub> state in the O<sub>2</sub>-producing Mn<sub>4</sub>CaO<sub>5</sub> cluster of photosystem IIKhetpakorn Chakarawet, Richard J Debus, R David BrittApplied Magnetic Resonance|May 5, 2022
Characterizing SPASM/twitch Domain-Containing Radical SAM Enzymes by EPR SpectroscopyAidin R Balo, Lizhi Tao, R David BrittAccounts 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 RaoMethods in Enzymology|April 25, 2022
Site directed spin labeling to elucidating the mechanism of the cyanobacterial circadian clockGary K Chow, Andy LiWang, R David BrittPageof 27