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Biochemistry|March 31, 2004
An appraisal of multiple NADPH binding-site models proposed for cytochrome P450 reductase, NO synthase, and related diflavin reductase systemsSimon DaffThe FEBS Journal|August 20, 2010
Conformation-dependent hydride transfer in neuronal nitric oxide synthase reductase domainAndrew Welland, Simon DaffThe Journal of Biological Chemistry|October 28, 2004
Thermodynamic and kinetic analysis of the nitrosyl, carbonyl, and dioxy heme complexes of neuronal nitric-oxide synthase. The roles of substrate and tetrahydrobiopterin in oxygen activationTobias W B Ost, Simon DaffThe 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 DaffNitric Oxide : Biology and Chemistry|February 8, 2011
Cytochrome P450 BM3, NO binding and real-time NO detectionTobias W B Ost, Sidong Liu, Simon DaffBiochemical and Biophysical Research Communications|November 24, 2004
The unusual redox properties of flavocytochrome P450 BM3 flavodoxin domainSinead C Hanley, Tobias W B Ost, Simon DaffJournal of the Royal Society, Interface|July 20, 2006
The formation of a complex between calmodulin and neuronal nitric oxide synthase is determined by ESI-MSSally Shirran, Pierre Garnaud, Simon Daff, et al.Biochemistry|August 25, 2004
Redox properties of the isolated flavin mononucleotide- and flavin adenine dinucleotide-binding domains of neuronal nitric oxide synthasePierre E Garnaud, Martijn Koetsier, Tobias W B Ost, et al.Biochemistry|August 23, 2008
Importance of the domain-domain interface to the catalytic action of the NO synthase reductase domainAndrew Welland, Pierre E Garnaud, Maki Kitamura, et al.Pageof 2