Simulations of hydride and deuteride transfer catalyzed by dihydrofolate reductase from the hyperthermophile Thermotoga maritima (TmDHFR) are presented. TmDHFR was modeled with its active homodimeric quaternary structure, where each monomer has three subdomains. The potential energy function was a combined quantum mechanical and molecular mechanical potential (69 atoms were treated quantum mechanically, and 35 287, by molecular mechanics). The calculations of the rate constants by ensemble-averaged variational transition state theory with multidimensional tunneling predicted that hydride and deuteride transfer at 278 K proceeded with 81 and 80% by tunneling. These percentages decreased to 50 and 49% at 338 K. The kinetic isotope effect was ...
Mixed quantum/classical molecular dynamics simulations of the hydride transfer reaction catalyzed by...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...
Given the ubiquity of hydride-transfer reactions in enzyme-catalyzed processes, identifying the appr...
Simulations of hydride and deuteride transfer catalyzed by dihydrofolate reductase from the hyperthe...
Simulations of hydride and deuteride transfer catalyzed by dihydrofolate reductase from the hyperthe...
Simulations of hydride and deuteride transfer catalyzed by dihydrofolate reductase from the hyperthe...
Much work has gone into understanding the physical basis of the enormous catalytic power of enzymes ...
Much work has gone into understanding the physical basis of the enormous catalytic power of enzymes ...
Much work has gone into understanding the physical basis of the enormous catalytic power of enzymes ...
Much work has gone into understanding the physical basis of the enormous catalytic power of enzymes ...
Residues M42 and G121 of Escherichia coli dihydrofolate reductase (ecDHFR) are on opposite sides of ...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...
Mixed quantum/classical molecular dynamics simulations of the hydride transfer reaction catalyzed by...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...
Given the ubiquity of hydride-transfer reactions in enzyme-catalyzed processes, identifying the appr...
Simulations of hydride and deuteride transfer catalyzed by dihydrofolate reductase from the hyperthe...
Simulations of hydride and deuteride transfer catalyzed by dihydrofolate reductase from the hyperthe...
Simulations of hydride and deuteride transfer catalyzed by dihydrofolate reductase from the hyperthe...
Much work has gone into understanding the physical basis of the enormous catalytic power of enzymes ...
Much work has gone into understanding the physical basis of the enormous catalytic power of enzymes ...
Much work has gone into understanding the physical basis of the enormous catalytic power of enzymes ...
Much work has gone into understanding the physical basis of the enormous catalytic power of enzymes ...
Residues M42 and G121 of Escherichia coli dihydrofolate reductase (ecDHFR) are on opposite sides of ...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...
Mixed quantum/classical molecular dynamics simulations of the hydride transfer reaction catalyzed by...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...
Given the ubiquity of hydride-transfer reactions in enzyme-catalyzed processes, identifying the appr...