Superoxide dismutases and superoxide reductases Y Sheng, IA Abreu, DE Cabelli, MJ Maroney, AF Miller, M Teixeira, ... Chemical reviews 114 (7), 3854-3918, 2014 | 1051 | 2014 |
Superoxide dismutases: ancient enzymes and new insights AF Miller FEBS letters 586 (5), 585-595, 2012 | 687 | 2012 |
Superoxide dismutases: active sites that save, but a protein that kills AF Miller Current opinion in chemical biology 8 (2), 162-168, 2004 | 461 | 2004 |
Synthesis and structural characterization of crystalline nonacenes B Purushothaman, M Bruzek, SR Parkin, AF Miller, JE Anthony Angewandte Chemie 123 (31), 7151-7155, 2011 | 299 | 2011 |
A guide to electron paramagnetic resonance spectroscopy of photosystem II membranes AF Miller, GW Brudvig Biochimica et Biophysica Acta (BBA)-Bioenergetics 1056 (1), 1-18, 1991 | 288 | 1991 |
Host− guest study of left-handed polyproline II helix formation MA Kelly, BW Chellgren, AL Rucker, JM Troutman, MG Fried, AF Miller, ... Biochemistry 40 (48), 14376-14383, 2001 | 283 | 2001 |
A simple proposal that can explain the inactivity of metal-substituted superoxide dismutases CK Vance, AF Miller Journal of the American Chemical Society 120 (3), 461-467, 1998 | 204 | 1998 |
Structures of nitroreductase in three states: effects of inhibitor binding and reduction CA Haynes, RL Koder, AF Miller, DW Rodgers Journal of Biological Chemistry 277 (13), 11513-11520, 2002 | 191 | 2002 |
Novel Insights into the Basis for Escherichia coli Superoxide Dismutase's Metal Ion Specificity from Mn-Substituted FeSOD and Its Very High Em CK Vance, AF Miller Biochemistry 40 (43), 13079-13087, 2001 | 159 | 2001 |
Electron bifurcation JW Peters, AF Miller, AK Jones, PW King, MWW Adams Current opinion in chemical biology 31, 146-152, 2016 | 157 | 2016 |
Steady-state kinetic mechanism, stereospecificity, substrate and inhibitor specificity of Enterobacter cloacae nitroreductase RL Koder, AF Miller Biochimica et Biophysica Acta (BBA)-Protein Structure and Molecular …, 1998 | 153 | 1998 |
The Electron Bifurcating FixABCX Protein Complex from Azotobacter vinelandii: Generation of Low-Potential Reducing Equivalents for Nitrogenase Catalysis RN Ledbetter, AM Garcia Costas, CE Lubner, DW Mulder, ... Biochemistry 56 (32), 4177-4190, 2017 | 152 | 2017 |
Redox tuning over almost 1 V in a structurally conserved active site: lessons from Fe-containing superoxide dismutase AF Miller Accounts of chemical research 41 (4), 501-510, 2008 | 146 | 2008 |
Manganese and calcium requirements for reconstitution of oxygen-evolution activity in manganese-depleted photosystem II membranes AF Miller, GW Brudvig Biochemistry 28 (20), 8181-8190, 1989 | 134 | 1989 |
Mechanistic insights into energy conservation by flavin-based electron bifurcation CE Lubner, DP Jennings, DW Mulder, GJ Schut, OA Zadvornyy, JP Hoben, ... Nature chemical biology 13 (6), 655-659, 2017 | 129 | 2017 |
Parallel polarization EPR characterization of the Mn (III) center of oxidized manganese superoxide dismutase KA Campbell, E Yikilmaz, CV Grant, W Gregor, AF Miller, RD Britt Journal of the American Chemical Society 121 (19), 4714-4715, 1999 | 122 | 1999 |
Peroxynitrite mediates active site tyrosine nitration in manganese superoxide dismutase. Evidence of a role for the carbonate radical anion NB Surmeli, NK Litterman, AF Miller, JT Groves Journal of the American Chemical Society 132 (48), 17174-17185, 2010 | 120 | 2010 |
Spectroscopic comparisons of the pH dependencies of Fe-substituted (Mn) superoxide dismutase and Fe-superoxide dismutase CK Vance, AF Miller Biochemistry 37 (16), 5518-5527, 1998 | 119 | 1998 |
Flavin thermodynamics explain the oxygen insensitivity of enteric nitroreductases RL Koder, CA Haynes, ME Rodgers, DW Rodgers, AF Miller Biochemistry 41 (48), 14197-14205, 2002 | 117 | 2002 |
Solution structure of the MutT enzyme, a nucleoside triphosphate pyrophosphohydrolase C Abeygunawardana, DJ Weber, AG Gittis, DN Frick, J Lin, AF Miller, ... Biochemistry 34 (46), 14997-15005, 1995 | 117 | 1995 |