Chemical ligation has been used to alter motions in specific regions of dihydrofolate reductase from E. coli and to investigate the effects of localized motional changes on enzyme catalysis. Two isotopic hybrids were prepared; one with the mobile N-terminal segment containing heavy isotopes (2H, 13C, 15N) and the remainder of the protein with natural isotopic abundance, and the other one with only the C-terminal segment isotopically labeled. Kinetic investigations indicated that isotopic substitution of the N-terminal segment affected only a physical step of catalysis, whereas the enzyme chemistry was affected by protein motions from the C-terminal segment. QM/MM studies support the idea that dynamic effects on catalysis mostly originate fr...
Heavy isotope labeling of enzymes slows protein motions without disturbing the electrostatics and ca...
Heavy isotope labeling of enzymes slows protein motions without disturbing the electrostatics and ca...
Dihydrofolate reductase (DHFR) from Escherichia coli has long served as a model enzyme with which to...
Experimental and computational approaches have long been employed to define the role of protein moti...
Experimental and computational approaches have long been employed to define the role of protein moti...
Chemical ligation has been used to alter motions in specific regions of dihydrofolate reductase from...
Protein isotope labeling is a powerful technique to probe functionally important motions in enzyme c...
The role of protein dynamics in the reaction catalyzed by dihydrofolate reductase from the hyperther...
Heavy isotope labeling of enzymes slows protein motions without disturbing the electrostatics and ca...
The results of cryo‐measurements of the kinetics of the human dihydrofolate reductase (HsDHFR) catal...
The results of cryo‐measurements of the kinetics of the human dihydrofolate reductase (HsDHFR) catal...
The results of cryo‐measurements of the kinetics of the human dihydrofolate reductase (HsDHFR) catal...
Protein isotope labeling is a powerful technique to probe functionally important motions in enzyme c...
Protein isotope labeling is a powerful technique to probe functionally important motions in enzyme c...
The role of protein motions in promoting the chemical step of enzyme catalysed reactions remains a s...
Heavy isotope labeling of enzymes slows protein motions without disturbing the electrostatics and ca...
Heavy isotope labeling of enzymes slows protein motions without disturbing the electrostatics and ca...
Dihydrofolate reductase (DHFR) from Escherichia coli has long served as a model enzyme with which to...
Experimental and computational approaches have long been employed to define the role of protein moti...
Experimental and computational approaches have long been employed to define the role of protein moti...
Chemical ligation has been used to alter motions in specific regions of dihydrofolate reductase from...
Protein isotope labeling is a powerful technique to probe functionally important motions in enzyme c...
The role of protein dynamics in the reaction catalyzed by dihydrofolate reductase from the hyperther...
Heavy isotope labeling of enzymes slows protein motions without disturbing the electrostatics and ca...
The results of cryo‐measurements of the kinetics of the human dihydrofolate reductase (HsDHFR) catal...
The results of cryo‐measurements of the kinetics of the human dihydrofolate reductase (HsDHFR) catal...
The results of cryo‐measurements of the kinetics of the human dihydrofolate reductase (HsDHFR) catal...
Protein isotope labeling is a powerful technique to probe functionally important motions in enzyme c...
Protein isotope labeling is a powerful technique to probe functionally important motions in enzyme c...
The role of protein motions in promoting the chemical step of enzyme catalysed reactions remains a s...
Heavy isotope labeling of enzymes slows protein motions without disturbing the electrostatics and ca...
Heavy isotope labeling of enzymes slows protein motions without disturbing the electrostatics and ca...
Dihydrofolate reductase (DHFR) from Escherichia coli has long served as a model enzyme with which to...