Peroxynitrite is a major contributor to cytokine-induced myocardial contractile failure P Ferdinandy, H Danial, I Ambrus, RA Rothery, R Schulz Circulation research 87 (3), 241-247, 2000 | 564 | 2000 |
Insights into the respiratory electron transfer pathway from the structure of nitrate reductase A MG Bertero, RA Rothery, M Palak, C Hou, D Lim, F Blasco, JH Weiner, ... Nature structural & molecular biology 10 (9), 681-687, 2003 | 544 | 2003 |
The prokaryotic complex iron–sulfur molybdoenzyme family RA Rothery, GJ Workun, JH Weiner Biochimica et Biophysica Acta (BBA)-Biomembranes 1778 (9), 1897-1929, 2008 | 249 | 2008 |
Molecular analysis of dimethylsulfoxide reductase: a complex iron-sulfur molybdoenzyme of Escherichia coli JH Weiner, RA Rothery, D Sambasivarao, CA Trieber Biochimica et Biophysica Acta (BBA)-Bioenergetics 1102 (1), 1-18, 1992 | 154 | 1992 |
The coordination and function of the redox centres of the membrane-bound nitrate reductases F Blasco*, B Guigliarelli, A Magalon, M Asso, G Giordano, RA Rothery Cellular and Molecular Life Sciences CMLS 58, 179-193, 2001 | 137 | 2001 |
Alteration of the iron-sulfur cluster composition of Escherichia coli dimethyl sulfoxide reductase by site-directed mutagenesis RA Rothery, JH Weiner Biochemistry 30 (34), 8296-8305, 1991 | 105 | 1991 |
Determination of an optimal potential window for catalysis by E. coli dimethyl sulfoxide reductase and hypothesis on the role of Mo (V) in the reaction pathway K Heffron, C Léger, RA Rothery, JH Weiner, FA Armstrong Biochemistry 40 (10), 3117-3126, 2001 | 103 | 2001 |
Structural and biochemical characterization of a quinol binding site of Escherichia coli nitrate reductase A MG Bertero, RA Rothery, N Boroumand, M Palak, F Blasco, N Ginet, ... Journal of Biological Chemistry 280 (15), 14836-14843, 2005 | 98 | 2005 |
Pyranopterin conformation defines the function of molybdenum and tungsten enzymes RA Rothery, B Stein, M Solomonson, ML Kirk, JH Weiner Proceedings of the National Academy of Sciences 109 (37), 14773-14778, 2012 | 97 | 2012 |
Voltammetric studies of the catalytic mechanism of the respiratory nitrate reductase from Escherichia coli: how nitrate reduction and inhibition depend on the oxidation state … SJ Elliott, KR Hoke, K Heffron, M Palak, RA Rothery, JH Weiner, ... Biochemistry 43 (3), 799-807, 2004 | 94 | 2004 |
The Catalytic Subunit of Escherichia coli Nitrate Reductase A Contains a Novel [4Fe-4S] Cluster with a High-Spin Ground State, RA Rothery, MG Bertero, R Cammack, M Palak, F Blasco, NCJ Strynadka, ... Biochemistry 43 (18), 5324-5333, 2004 | 92 | 2004 |
Molybdenum Cofactor Properties and [Fe-S] Cluster Coordination in Escherichia c oli Nitrate Reductase A: Investigation by Site-Directed Mutagenesis of the Conserved His-50 … A Magalon, M Asso, B Guigliarelli, RA Rothery, P Bertrand, G Giordano, ... Biochemistry 37 (20), 7363-7370, 1998 | 88 | 1998 |
Characterization of an Escherichia coli Sulfite Oxidase Homologue Reveals the Role of a Conserved Active Site Cysteine in Assembly and Function SJ Brokx, RA Rothery, G Zhang, DP Ng, JH Weiner Biochemistry 44 (30), 10339-10348, 2005 | 85 | 2005 |
The quinone binding site in Escherichia coli succinate dehydrogenase is required for electron transfer to the heme b QM Tran, RA Rothery, E Maklashina, G Cecchini, JH Weiner Journal of Biological Chemistry 281 (43), 32310-32317, 2006 | 77 | 2006 |
The molybdenum cofactor of Escherichia coli nitrate reductase A (NarGHI): effect of a mobAB mutation and interactions with [Fe-S] clusters RA Rothery, A Magalon, G Giordano, B Guigliarelli, F Blasco, JH Weiner Journal of Biological Chemistry 273 (13), 7462-7469, 1998 | 69 | 1998 |
Interaction of an engineered [3Fe-4S] cluster with a menaquinol binding site of Escherichia coli DMSO reductase RA Rothery, JH Weiner Biochemistry 35 (10), 3247-3257, 1996 | 67 | 1996 |
The iron-sulfur clusters in Escherichia coli succinate dehydrogenase direct electron flow VWT Cheng, E Ma, Z Zhao, RA Rothery, JH Weiner Journal of Biological Chemistry 281 (37), 27662-27668, 2006 | 66 | 2006 |
Heme Axial Ligation by the Highly Conserved His Residues in Helix II of Cytochrome b (NarI) of Escherichia coliNitrate Reductase A (NarGHI) A Magalon, D Lemesle-Meunier, RA Rothery, C Frixon, JH Weiner, ... Journal of Biological Chemistry 272 (41), 25652-25658, 1997 | 63 | 1997 |
Hydroxylated naphthoquinones as substrates for Escherichia coli anaerobic reductases RA ROTHERY, I CHATTERJEE, G KIEMA, MT McDERMOTT, JH WEINER Biochemical Journal 332 (1), 35-41, 1998 | 61 | 1998 |
Detection and interpretation of redox potential optima in the catalytic activity of enzymes SJ Elliott, C Léger, HR Pershad, J Hirst, K Heffron, N Ginet, F Blasco, ... Biochimica et Biophysica Acta (BBA)-Bioenergetics 1555 (1-3), 54-59, 2002 | 60 | 2002 |