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Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences|June 14, 2003
From structure to mechanism: electron crystallographic studies of bacteriorhodopsinSriram Subramaniam, Teruhisa Hirai, Richard HendersonIucrj|June 8, 2026
Cryo-EM: the revolution continuesSriram Subramaniam, Werner Kühlbrandt, Richard HendersonIucrj|February 13, 2016
CryoEM at IUCrJ: a new eraSriram Subramaniam, Werner Kühlbrandt, Richard HendersonThe Journal of Biological Chemistry|July 10, 2009
Demonstration of proton-coupled electron transfer in the copper-containing nitrite reductasesSibylle Brenner, Derren J Heyes, Sam Hay, et al.Journal of Molecular Microbiology and Biotechnology|February 27, 2010
Characterization of cycP gene expression in Achromobacter xylosoxidans NCIMB 11015 and high-level heterologous synthesis of cytochrome c' in Escherichia coliRoger L Harris, Sonia Barbieri, Kostas Paraskevopoulos, et al.Journal of Molecular Biology|February 7, 2002
Biochemical and crystallographic studies of the Met144Ala, Asp92Asn and His254Phe mutants of the nitrite reductase from Alcaligenes xylosoxidans provide insight into the enzyme mechanismMark J Ellis, Miguel Prudêncio, Fraser E Dodd, et al.Journal of Synchrotron Radiation|December 24, 2004
Towards the high-throughput expression of metalloproteins from the Mycobacterium tuberculosis genomeJohn F Hall, Mark J Ellis, Takanori Kigawa, et al.Nature Communications|July 16, 2014
Impact of residues remote from the catalytic centre on enzyme catalysis of copper nitrite reductaseNicole G H Leferink, Svetlana V Antonyuk, Joseline A Houwman, et al.Proceedings of the National Academy of Sciences of the United States of America|February 10, 2016
Crystallography captures catalytic steps in human methionine adenosyltransferase enzymesBen Murray, Svetlana V Antonyuk, Alberto Marina, et al.Chemical Science|June 7, 2021
Nature of the copper-nitrosyl intermediates of copper nitrite reductases during catalysisMichael A Hough, Jeanet Conradie, Richard W Strange, et al.Pageof 18