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R F Pratt

Showing results (31-40 of 139) with videos related to

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Proteins|January 1, 1989
Chemical modification of the RTEM-1 thiol beta-lactamase by thiol-selective reagents: evidence for activation of the primary nucleophile of the beta-lactamase active site by adjacent functional groupsA K Knap, R F Pratt
The Biochemical Journal|April 1, 1989
Effect of the 3'-leaving group on turnover of cephem antibiotics by a class C beta-lactamaseL J Mazzella, R F Pratt
The Biochemical Journal|October 1, 1987
Inactivation of the thiol RTEM-1 beta-lactamase by 6-beta-bromopenicillanic acid. Identity of the primary active-site nucleophileA K Knap, R F Pratt
Drugs|January 1, 1974
Folic acid deficiency and epilepsyJ W Norris, R F Pratt
Biochemistry|October 28, 2010
Structural relationship between the active sites of β-lactam-recognizing and amidase signature enzymes: convergent evolution?R F Pratt, Michael J McLeish
Biochemistry|May 20, 1986
Mechanism of inhibition of RTEM-2 beta-lactamase by cephamycins: relative importance of the 7 alpha-methoxy group and the 3' leaving groupW S Faraci, R F Pratt
The Journal of Biological Chemistry|November 10, 1983
Pre-steady state beta-lactamase kinetics. The trapping of a covalent intermediate and the interpretation of pH rate profilesE G Anderson, R F Pratt
Journal of Chemical Education|August 1, 1977
The fumarase reactionG J Kasperek, R F Pratt
Organic & Biomolecular Chemistry|August 2, 2012
Kinetics and stereochemistry of hydrolysis of an N-(phenylacetyl)-α-hydroxyglycine ester catalyzed by serine β-lactamases and DD-peptidasesRyan B Pelto, R F Pratt
The Journal of Clinical Investigation|February 1, 1971
Folates in plasma and bile of man after feeding folic acid--3H and 5-formyltetrahydrofolate (folinic acid)R F Pratt, B A Cooper
Pageof 14

Showing results (31-40 of 139) with videos related to

Sort By:
Pageof 14
Proteins|January 1, 1989
Chemical modification of the RTEM-1 thiol beta-lactamase by thiol-selective reagents: evidence for activation of the primary nucleophile of the beta-lactamase active site by adjacent functional groupsA K Knap, R F Pratt
The Biochemical Journal|April 1, 1989
Effect of the 3'-leaving group on turnover of cephem antibiotics by a class C beta-lactamaseL J Mazzella, R F Pratt
The Biochemical Journal|October 1, 1987
Inactivation of the thiol RTEM-1 beta-lactamase by 6-beta-bromopenicillanic acid. Identity of the primary active-site nucleophileA K Knap, R F Pratt
Drugs|January 1, 1974
Folic acid deficiency and epilepsyJ W Norris, R F Pratt
Biochemistry|October 28, 2010
Structural relationship between the active sites of β-lactam-recognizing and amidase signature enzymes: convergent evolution?R F Pratt, Michael J McLeish
Biochemistry|May 20, 1986
Mechanism of inhibition of RTEM-2 beta-lactamase by cephamycins: relative importance of the 7 alpha-methoxy group and the 3' leaving groupW S Faraci, R F Pratt
The Journal of Biological Chemistry|November 10, 1983
Pre-steady state beta-lactamase kinetics. The trapping of a covalent intermediate and the interpretation of pH rate profilesE G Anderson, R F Pratt
Journal of Chemical Education|August 1, 1977
The fumarase reactionG J Kasperek, R F Pratt
Organic & Biomolecular Chemistry|August 2, 2012
Kinetics and stereochemistry of hydrolysis of an N-(phenylacetyl)-α-hydroxyglycine ester catalyzed by serine β-lactamases and DD-peptidasesRyan B Pelto, R F Pratt
The Journal of Clinical Investigation|February 1, 1971
Folates in plasma and bile of man after feeding folic acid--3H and 5-formyltetrahydrofolate (folinic acid)R F Pratt, B A Cooper
Pageof 14