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G R Drysdale

Showing results (1-10 of 9) with videos related to

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The Biochemical Journal|January 1, 1979
The biosynthesis of methylcitrateS W Weidman, G R Drysdale
Biochemistry|May 5, 1987
Evidence from Fourier transform infrared spectroscopy for polarization of the carbonyl of oxaloacetate in the active site of citrate synthaseL C Kurz, G R Drysdale
Biochemistry|August 21, 1979
Interaction of a paramagnetic analogue of oxaloacetate with citrate synthaseS W Weidman, G R Drysdale
Biochemistry|January 15, 1985
Evidence from 13C NMR for polarization of the carbonyl of oxaloacetate in the active site of citrate synthaseL C Kurz, J J Ackerman, G R Drysdale
Biochemistry|September 1, 1992
Catalytic strategy of citrate synthase: effects of amino acid changes in the acetyl-CoA binding site on transition-state analog inhibitor complexesL C Kurz, G R Drysdale, M C Riley, et al.
Biochemistry|July 10, 1998
Effects of changes in three catalytic residues on the relative stabilities of some of the intermediates and transition states in the citrate synthase reactionL C Kurz, T Nakra, R Stein, et al.
Biochemistry|September 1, 1992
Proton uptake accompanies formation of the ternary complex of citrate synthase, oxaloacetate, and the transition-state analog inhibitor, carboxymethyl-CoA. Evidence that a neutral enol is the activated form of acetyl-CoA in the citrate synthase reactionL C Kurz, S Shah, B R Crane, et al.
Biochemistry|April 1, 1997
Ability of single-site mutants of citrate synthase to catalyze proton transfer from the methyl group of dethiaacetyl-coenzyme A, a non-thioester substrate analogL C Kurz, J H Roble, T Nakra, et al.
Biochemistry|October 17, 1995
Catalytic strategy of citrate synthase: subunit interactions revealed as a consequence of a single amino acid change in the oxaloacetate binding siteL C Kurz, S Shah, C Frieden, et al.
Pageof 1

Showing results (1-10 of 9) with videos related to

Sort By:
Pageof 1
The Biochemical Journal|January 1, 1979
The biosynthesis of methylcitrateS W Weidman, G R Drysdale
Biochemistry|May 5, 1987
Evidence from Fourier transform infrared spectroscopy for polarization of the carbonyl of oxaloacetate in the active site of citrate synthaseL C Kurz, G R Drysdale
Biochemistry|August 21, 1979
Interaction of a paramagnetic analogue of oxaloacetate with citrate synthaseS W Weidman, G R Drysdale
Biochemistry|January 15, 1985
Evidence from 13C NMR for polarization of the carbonyl of oxaloacetate in the active site of citrate synthaseL C Kurz, J J Ackerman, G R Drysdale
Biochemistry|September 1, 1992
Catalytic strategy of citrate synthase: effects of amino acid changes in the acetyl-CoA binding site on transition-state analog inhibitor complexesL C Kurz, G R Drysdale, M C Riley, et al.
Biochemistry|July 10, 1998
Effects of changes in three catalytic residues on the relative stabilities of some of the intermediates and transition states in the citrate synthase reactionL C Kurz, T Nakra, R Stein, et al.
Biochemistry|September 1, 1992
Proton uptake accompanies formation of the ternary complex of citrate synthase, oxaloacetate, and the transition-state analog inhibitor, carboxymethyl-CoA. Evidence that a neutral enol is the activated form of acetyl-CoA in the citrate synthase reactionL C Kurz, S Shah, B R Crane, et al.
Biochemistry|April 1, 1997
Ability of single-site mutants of citrate synthase to catalyze proton transfer from the methyl group of dethiaacetyl-coenzyme A, a non-thioester substrate analogL C Kurz, J H Roble, T Nakra, et al.
Biochemistry|October 17, 1995
Catalytic strategy of citrate synthase: subunit interactions revealed as a consequence of a single amino acid change in the oxaloacetate binding siteL C Kurz, S Shah, C Frieden, et al.
Pageof 1