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G L Kenyon

Showing results (21-30 of 99) with videos related to

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The Journal of Biological Chemistry|July 10, 1972
Specificity of creatine kinase for guanidino substrates. Kinetic and proton nuclear magnetic relaxation rate studiesA C McLaughlin, M Cohn, G L Kenyon
Analytical Biochemistry|January 1, 1983
Incorporation of specifically labeled cysteine into Escherichia coli proteinH S Beilan, G L Kenyon, D T Browne
Biochemistry|March 17, 1981
Carbon-13 nuclear magnetic resonance studies of mandelate metabolism in whole bacterial cells and in isolated, in vivo cross-linked enzyme complexesR A Halpin, G D Hegeman, G L Kenyon
Biochemistry|March 22, 1977
Mandelate racemase from Pseudomonas putida. Absence of detectable intermolecular proton transfer accompanying racemizationT R Sharp, G D Hegeman, G L Kenyon
Biochemistry|February 25, 1975
Simple alkanethiol groups for temporary blocking of sulfhydryl groups of enzymesD J Smith, E T Maggio, G L Kenyon
Biochemistry|February 13, 1990
Specificity of S-adenosylmethionine synthetase for ATP analogues mono- and disubstituted in bridging positions of the polyphosphate chainQ F Ma, G L Kenyon, G D Markham
Biochemical and Biophysical Research Communications|April 8, 1970
Incorporation of monoflurotryptophans into protein during the growth of Escherichia coliD R Browne, G L Kenyon, G D Hegeman
Advances in Experimental Medicine and Biology|January 1, 1993
The oxidation of aldehydes by horse liver alcohol dehydrogenaseG T Henehan, G L Kenyon, N J Oppenheimer
Biochemistry|October 13, 1970
Mandelic acid racemase from Pseudomonas putida. Purification and properties of the enzymeG D Hegeman, E Y Rosenberg, G L Kenyon
Biochemistry|June 4, 1974
Mandelate racemase from Pseudomonas putida. Subunit composition and absolute divalent metal ion requirementJ A Fee, G D Hegeman, G L Kenyon
Pageof 10

Showing results (21-30 of 99) with videos related to

Sort By:
Pageof 10
The Journal of Biological Chemistry|July 10, 1972
Specificity of creatine kinase for guanidino substrates. Kinetic and proton nuclear magnetic relaxation rate studiesA C McLaughlin, M Cohn, G L Kenyon
Analytical Biochemistry|January 1, 1983
Incorporation of specifically labeled cysteine into Escherichia coli proteinH S Beilan, G L Kenyon, D T Browne
Biochemistry|March 17, 1981
Carbon-13 nuclear magnetic resonance studies of mandelate metabolism in whole bacterial cells and in isolated, in vivo cross-linked enzyme complexesR A Halpin, G D Hegeman, G L Kenyon
Biochemistry|March 22, 1977
Mandelate racemase from Pseudomonas putida. Absence of detectable intermolecular proton transfer accompanying racemizationT R Sharp, G D Hegeman, G L Kenyon
Biochemistry|February 25, 1975
Simple alkanethiol groups for temporary blocking of sulfhydryl groups of enzymesD J Smith, E T Maggio, G L Kenyon
Biochemistry|February 13, 1990
Specificity of S-adenosylmethionine synthetase for ATP analogues mono- and disubstituted in bridging positions of the polyphosphate chainQ F Ma, G L Kenyon, G D Markham
Biochemical and Biophysical Research Communications|April 8, 1970
Incorporation of monoflurotryptophans into protein during the growth of Escherichia coliD R Browne, G L Kenyon, G D Hegeman
Advances in Experimental Medicine and Biology|January 1, 1993
The oxidation of aldehydes by horse liver alcohol dehydrogenaseG T Henehan, G L Kenyon, N J Oppenheimer
Biochemistry|October 13, 1970
Mandelic acid racemase from Pseudomonas putida. Purification and properties of the enzymeG D Hegeman, E Y Rosenberg, G L Kenyon
Biochemistry|June 4, 1974
Mandelate racemase from Pseudomonas putida. Subunit composition and absolute divalent metal ion requirementJ A Fee, G D Hegeman, G L Kenyon
Pageof 10