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Results 1-10 of 11 (Search time: 0.003 seconds).
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PreviewIssue DateTitleAuthor(s)
2020Unravelling electron transfer in peptide-cation complexes: a model for mimicking redox centres in proteinsYu, J.; Horsley, J.R.; Abell, A.D.
2023The bacterial cytochrome P450 (CYP) CYP125 enzymes can competitively oxidise sitosterol in the presence of cholesterolDoherty, D.Z.; Ghith, A.; Ho, A.; De Voss, J.J.; Bell, S.G.
2006Structure of the active site of sulfite dehydrogenase from Starkeya novellaDoonan, C.; Kappler, U.; George, G.
2011Structure, electronic properties and catalytic behaviour of an activity-enhancing CYP102A1 (P450BM3) variantWhitehouse, C.; Yang, W.; Yorke, J.; Tufton, H.; Ogilvie, L.; Bell, S.; Zhou, W.; Bartlam, M.; Rao, Z.; Wong, L.
2013Redox activity and two-step valence tautomerism in a family of dinuclear cobalt complexes with a spiroconjugated bis(dioxolene) ligandAlley, K.; Poneti, G.; Robinson, P.; Nafady, A.; Moubaraki, B.; Aitken, J.; Drew, S.; Ritchie, C.; Abrahams, B.; Hocking, R.; Murray, K.; Bond, A.; Harris, H.; Sorace, L.; Boskovic, C.
2009Dihydroxylation of 4-substituted 1,2-dioxines: A concise route to branched erythro sugarsRobinson, T.; Pedersen, D.; Taylor, D.; Tiekink, E.
2008Electrochemistry of catechol terminated monolayers with Cu(II), Ni(II) and, Fe(III) cations: A model for the marine adhesive interfaceBrooksby, P.; Schiel, D.; Abell, A.
2008Evolved CYP102A1 (P450BM3) variants oxidise a range of non-natural substrates and offer new selectivity optionsWhitehouse, C.; Bell, S.; Tufton, H.; Kenny, R.; Ogilvie, L.; Wong, L.
2012P450BM3 (CYP102A1): connecting the dotsWhitehouse, C.; Bell, S.; Wong, L.
2010The dissociated form of kappa-casein is the precursor to its amyloid fibril formationEcroyd, H.; Thorn, D.; Liu, Y.; Carver, J.