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G Harman

Showing results (31-40 of 69) with videos related to

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Biochemistry|May 13, 1999
Position 127 amino acid substitutions affect the formation of CRP:cAMP:lacP complexes but not CRP:cAMP:RNA polymerase complexes at lacPS F Leu, C H Baker, E J Lee, et al.
Protein Expression and Purification|April 1, 1991
Hyperexpression in Escherichia coli, purification, and characterization of the metallo-beta-lactamase of Bacillus cereus 5/B/6R W Shaw, S D Clark, N P Hilliard, et al.
Analytical Chemistry|October 24, 2017
Optimized Method to Quantify Dopamine Turnover in the Mammalian RetinaVíctor Pérez-Fernández, David G Harman, John W Morley, et al.
Analytica Chimica Acta|March 6, 2026
Automated sample-preparation and mass spectrometry-based assays for free and total Infliximab: Enabling therapeutic drug monitoring of monoclonal antibodiesMelissa J Sam, David G Harman, Catherine M Toong, et al.
Biochemistry|October 10, 2001
Amino acid substitution at position 99 affects the rate of CRP subunit exchangeC H Baker, S R Tomlinson, A E García, et al.
Biochemistry|May 30, 1989
Crystal structure of a cAMP-independent form of catabolite gene activator protein with adenosine substituted in one of two cAMP-binding sitesM C Vaney, G L Gilliland, J G Harman, et al.
Nucleic Acids Research|August 11, 1994
Mutagenesis of the cyclic AMP receptor protein of Escherichia coli: targeting positions 83, 127 and 128 of the cyclic nucleotide binding pocketE J Lee, J Glasgow, S F Leu, et al.
The American Journal of Digestive Diseases|April 1, 1977
Studies on the pathogenesis of diet-induced dog gallstonesE Englert, C G Harman, J W Freston, et al.
The Journal of Rheumatology|September 1, 1995
Combination drug therapy of seropositive rheumatoid arthritisD J McCarty, J G Harman, J L Grassanovich, et al.
Physical Chemistry Chemical Physics : PCCP|November 10, 2012
Isolation and characterization of charge-tagged phenylperoxyl radicals in the gas phase: direct evidence for products and pathways in low temperature benzene oxidationBenjamin B Kirk, David G Harman, Hilkka I Kenttämaa, et al.
Pageof 7

Showing results (31-40 of 69) with videos related to

Sort By:
Pageof 7
Biochemistry|May 13, 1999
Position 127 amino acid substitutions affect the formation of CRP:cAMP:lacP complexes but not CRP:cAMP:RNA polymerase complexes at lacPS F Leu, C H Baker, E J Lee, et al.
Protein Expression and Purification|April 1, 1991
Hyperexpression in Escherichia coli, purification, and characterization of the metallo-beta-lactamase of Bacillus cereus 5/B/6R W Shaw, S D Clark, N P Hilliard, et al.
Analytical Chemistry|October 24, 2017
Optimized Method to Quantify Dopamine Turnover in the Mammalian RetinaVíctor Pérez-Fernández, David G Harman, John W Morley, et al.
Analytica Chimica Acta|March 6, 2026
Automated sample-preparation and mass spectrometry-based assays for free and total Infliximab: Enabling therapeutic drug monitoring of monoclonal antibodiesMelissa J Sam, David G Harman, Catherine M Toong, et al.
Biochemistry|October 10, 2001
Amino acid substitution at position 99 affects the rate of CRP subunit exchangeC H Baker, S R Tomlinson, A E García, et al.
Biochemistry|May 30, 1989
Crystal structure of a cAMP-independent form of catabolite gene activator protein with adenosine substituted in one of two cAMP-binding sitesM C Vaney, G L Gilliland, J G Harman, et al.
Nucleic Acids Research|August 11, 1994
Mutagenesis of the cyclic AMP receptor protein of Escherichia coli: targeting positions 83, 127 and 128 of the cyclic nucleotide binding pocketE J Lee, J Glasgow, S F Leu, et al.
The American Journal of Digestive Diseases|April 1, 1977
Studies on the pathogenesis of diet-induced dog gallstonesE Englert, C G Harman, J W Freston, et al.
The Journal of Rheumatology|September 1, 1995
Combination drug therapy of seropositive rheumatoid arthritisD J McCarty, J G Harman, J L Grassanovich, et al.
Physical Chemistry Chemical Physics : PCCP|November 10, 2012
Isolation and characterization of charge-tagged phenylperoxyl radicals in the gas phase: direct evidence for products and pathways in low temperature benzene oxidationBenjamin B Kirk, David G Harman, Hilkka I Kenttämaa, et al.
Pageof 7