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Nature Communications|December 2, 2024
Structural evolution of nitrogenase states under alkaline turnoverRebeccah A Warmack, Douglas C Rees
Science (New York, N.Y.)|May 10, 2003
The interface between the biological and inorganic worlds: iron-sulfur metalloclustersDouglas C Rees, James B Howard
Joule|September 1, 2020
Rethinking the Nitrogenase Mechanism: Activating the Active SiteTrixia M Buscagan, Douglas C Rees
Annual Review of Biophysics and Biomolecular Structure|May 4, 2002
The alpha-helix and the organization and gating of channelsRobert H Spencer, Douglas C Rees
Protein Science : a Publication of the Protein Society|September 17, 2013
Structure and stability of the C-terminal helical bundle of the E. coli mechanosensitive channel of large conductanceTroy A Walton, Douglas C Rees
Journal of the American Chemical Society|November 8, 2022
Solvent Deuterium Isotope Effects of Substrate Reduction by Nitrogenase from <i>Azotobacter vinelandii</i>Siobhán G MacArdle, Douglas C Rees
Proceedings of the National Academy of Sciences of the United States of America|November 8, 2006
How many metals does it take to fix N2? A mechanistic overview of biological nitrogen fixationJames B Howard, Douglas C Rees
The Journal of Biological Chemistry|February 14, 2015
The allosteric regulatory mechanism of the Escherichia coli MetNI methionine ATP binding cassette (ABC) transporterJanet G Yang, Douglas C Rees
Nature Reviews. Molecular Cell Biology|February 24, 2009
ABC transporters: the power to changeDouglas C Rees, Eric Johnson, Oded Lewinson
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