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Biochemistry|February 24, 2000
Kinetic studies of the mechanism of carbon-hydrogen bond breakage by the heterotetrameric sarcosine oxidase of Arthrobacter sp. 1-INR J Harris, R Meskys, M J Sutcliffe, et al.The Journal of Biological Chemistry|August 28, 2003
H-tunneling in the multiple H-transfers of the catalytic cycle of morphinone reductase and in the reductive half-reaction of the homologous pentaerythritol tetranitrate reductaseJaswir Basran, Richard J Harris, Michael J Sutcliffe, et al.The Journal of Physical Chemistry. B|February 20, 2007
Proton tunneling in aromatic amine dehydrogenase is driven by a short-range sub-picosecond promoting vibration: consistency of simulation and theory with experimentLinus O Johannissen, Sam Hay, Nigel S Scrutton, et al.Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry|August 1, 2008
Solvent as a probe of active site motion and chemistry during the hydrogen tunnelling reaction in morphinone reductaseSam Hay, Christopher R Pudney, Michael J Sutcliffe, et al.Biochemistry|January 29, 1991
Analysis of phi and chi 1 torsion angles for hen lysozyme in solution from 1H NMR spin-spin coupling constantsL J Smith, M J Sutcliffe, C Redfield, et al.International Journal of STD & AIDS|June 27, 2015
Developing new models of shared primary and specialist HIV care in the UK: a survey of current practiceJane Hutchinson, Loma J Sutcliffe, Andy J Williams, et al.Biochemistry|August 5, 2000
Differential coupling through Val-344 and Tyr-442 of trimethylamine dehydrogenase in electron transfer reactions with ferricenium ions and electron transferring flavoproteinJ Basran, K K Chohan, M J Sutcliffe, et al.Journal of Molecular Biology|February 20, 1993
Structure of hen lysozyme in solutionL J Smith, M J Sutcliffe, C Redfield, et al.Journal of Physical Organic Chemistry|October 5, 2010
Probing active site geometry using high pressure and secondary isotope effects in an enzyme-catalysed 'deep' H-tunnelling reactionSam Hay, Christopher R Pudney, Michael J Sutcliffe, et al.Biophysical Journal|January 21, 2010
Barrier compression and its contribution to both classical and quantum mechanical aspects of enzyme catalysisSam Hay, Linus O Johannissen, Michael J Sutcliffe, et al.Pageof 29