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Dalton Transactions (Cambridge, England : 2003)|October 20, 2005
Multi-heme cytochromes--new structures, new chemistryChristopher G Mowat, Stephen K ChapmanDalton Transactions (Cambridge, England : 2003)|December 18, 2004
Ligand probes for heme proteinsJ L Ross Anderson, Stephen K ChapmanMolecular Biosystems|August 2, 2006
Molecular mechanisms of enzyme-catalysed halogenationJ L Ross Anderson, Stephen K ChapmanThe Journal of Biological Chemistry|June 29, 2002
Calmodulin activates electron transfer through neuronal nitric-oxide synthase reductase domain by releasing an NADPH-dependent conformational lockDaniel H Craig, Stephen K Chapman, Simon DaffBiochemistry|August 6, 2003
The tetraheme cytochrome CymA is required for anaerobic respiration with dimethyl sulfoxide and nitrite in Shewanella oneidensisCarsten Schwalb, Stephen K Chapman, Graeme A ReidBiochemical Society Transactions|November 22, 2008
Exploring the mechanism of tryptophan 2,3-dioxygenaseSarah J Thackray, Christopher G Mowat, Stephen K ChapmanArchives of Biochemistry and Biophysics|October 24, 2009
Flavin-containing heme enzymesChristopher G Mowat, Ben Gazur, Laura P Campbell, et al.FEBS Letters|July 31, 2007
An octaheme c-type cytochrome from Shewanella oneidensis can reduce nitrite and hydroxylamineSally J Atkinson, Christopher G Mowat, Graeme A Reid, et al.FEBS Letters|February 25, 2006
Fumarate reductase: structural and mechanistic insights from the catalytic reduction of 2-methylfumarateCaroline Wardrope, Christopher G Mowat, Malcolm D Walkinshaw, et al.Journal of the American Chemical Society|May 16, 2002
Electron-transfer mechanisms through biological redox chains in multicenter enzymesLars J C Jeuken, Anne K Jones, Stephen K Chapman, et al.Pageof 5