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Journal of the American Chemical Society|August 20, 2014
Nitrite and hydroxylamine as nitrogenase substrates: mechanistic implications for the pathway of N₂ reductionSudipta Shaw, Dmitriy Lukoyanov, Karamatullah Danyal, et al.Nature Communications|September 10, 2021
Conformational rearrangements enable iterative backbone N-methylation in RiPP biosynthesisFredarla S Miller, Kathryn K Crone, Matthew R Jensen, et al.Proceedings of the National Academy of Sciences of the United States of America|September 25, 2013
Electron transfer precedes ATP hydrolysis during nitrogenase catalysisSimon Duval, Karamatullah Danyal, Sudipta Shaw, et al.Proceedings of the National Academy of Sciences of the United States of America|August 24, 2016
Light-driven carbon dioxide reduction to methane by nitrogenase in a photosynthetic bacteriumKathryn R Fixen, Yanning Zheng, Derek F Harris, et al.Journal of the American Chemical Society|August 31, 2017
Mechanism of Nitrogenase H2 Formation by Metal-Hydride Protonation Probed by Mediated Electrocatalysis and H/D Isotope EffectsNimesh Khadka, Ross D Milton, Sudipta Shaw, et al.Biochemistry|December 29, 2017
Mechanism of N2 Reduction Catalyzed by Fe-Nitrogenase Involves Reductive Elimination of H2Derek F Harris, Dmitriy A Lukoyanov, Sudipta Shaw, et al.Biochemistry|April 2, 2015
Fe protein-independent substrate reduction by nitrogenase MoFe protein variantsKaramatullah Danyal, Andrew J Rasmussen, Stephen M Keable, et al.Proceedings of the National Academy of Sciences of the United States of America|October 5, 2016
Negative cooperativity in the nitrogenase Fe protein electron delivery cycleKaramatullah Danyal, Sudipta Shaw, Taylor R Page, et al.Biochemistry|June 14, 2016
Evidence That the Pi Release Event Is the Rate-Limiting Step in the Nitrogenase Catalytic CycleZhi-Yong Yang, Rhesa Ledbetter, Sudipta Shaw, et al.Pageof 1