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Journal Abstract Search


271 related items for PubMed ID: 23461730

  • 21. Model systems for flavoenzyme activity: interplay of hydrogen bonding and aromatic stacking in cofactor redox modulation.
    Gray M, Goodman AJ, Carroll JB, Bardon K, Markey M, Cooke G, Rotello VM.
    Org Lett; 2004 Feb 05; 6(3):385-8. PubMed ID: 14748599
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  • 22. Electron transfer in human methionine synthase reductase studied by stopped-flow spectrophotometry.
    Wolthers KR, Scrutton NS.
    Biochemistry; 2004 Jan 20; 43(2):490-500. PubMed ID: 14717604
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  • 23. [EFFECT OF BARBITURATES ON THE NON-ENZYMATIC OXIDATION OF NADH CATALYZED BY IRRADIATED FLAVIN].
    GIUDITTA A.
    Boll Soc Ital Biol Sper; 1963 Dec 31; 39():1716-9. PubMed ID: 14150782
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  • 24. Light-triggered proton and electron transfer in flavin cofactors.
    Li G, Glusac KD.
    J Phys Chem A; 2008 May 22; 112(20):4573-83. PubMed ID: 18433109
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  • 25. Label-free monitoring of ambient oxygenation and redox conditions using the photodynamics of flavin compounds and transient state (TRAST) spectroscopy.
    Tornmalm J, Widengren J.
    Methods; 2018 May 01; 140-141():178-187. PubMed ID: 29179988
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  • 30. A bifunctional molecule as an artificial flavin mononucleotide cyclase and a chemosensor for selective fluorescent detection of flavins.
    Rhee HW, Choi SJ, Yoo SH, Jang YO, Park HH, Pinto RM, Cameselle JC, Sandoval FJ, Roje S, Han K, Chung DS, Suh J, Hong JI.
    J Am Chem Soc; 2009 Jul 29; 131(29):10107-12. PubMed ID: 19569646
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  • 31. Calculating chemically accurate redox potentials for engineered flavoproteins from classical molecular dynamics free energy simulations.
    Sattelle BM, Sutcliffe MJ.
    J Phys Chem A; 2008 Dec 18; 112(50):13053-7. PubMed ID: 18828581
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  • 32. Direct measurement by laser flash photolysis of intramolecular electron transfer in a two-domain construct of murine inducible nitric oxide synthase.
    Feng C, Thomas C, Holliday MA, Tollin G, Salerno JC, Ghosh DK, Enemark JH.
    J Am Chem Soc; 2006 Mar 22; 128(11):3808-11. PubMed ID: 16536556
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  • 33. Flavin adenine dinucleotide content of quinone reductase 2: analysis and optimization for structure-function studies.
    Leung KK, Litchfield DW, Shilton BH.
    Anal Biochem; 2012 Jan 01; 420(1):84-9. PubMed ID: 21971443
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  • 34. Riboflavin as a source of autofluorescence in Eisenia fetida coelomocytes.
    Koziol B, Markowicz M, Kruk J, Plytycz B.
    Photochem Photobiol; 2006 Jan 01; 82(2):570-3. PubMed ID: 16396606
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  • 35. Flavin adenine dinucleotide as precursor for NADH electrocatalyst.
    de-Los-Santos-Alvarez N, de-Los-Santos-Alvarez P, Lobo-Castañón MJ, Miranda-Ordieres AJ, Tuñón-Blanco P.
    Anal Chem; 2005 Jul 01; 77(13):4286-9. PubMed ID: 15987139
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  • 36. Redox properties of the reduced nicotinamide adenine dinucleotide phosphate-cytochrome P-450 and reduced nicotinamide adenine dinucleotide-cytochrome b5 reductases.
    Iyanagi T, Makino N, Mason HS.
    Biochemistry; 1974 Apr 09; 13(8):1701-10. PubMed ID: 4151581
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