Isotopic substitution (<sup>15</sup>N, <sup>13</sup>C, <sup>2</sup>H) of a catalytically compromised variant of <i>Escherichia coli</i> dihydrofolate reductase, EcDHFR-N23PP/S148A, has been used to investigate the effect of these mutations on catalysis. The reduction of the rate constant of the chemical step in the EcDHFR-N23PP/S148A catalyzed reaction is essentially a consequence of an increase of the quasi-classical free energy barrier and to a minor extent of an increased number of recrossing trajectories on the transition state dividing surface. Since the variant enzyme is less well set up to catalyze the reaction, a higher degree of active site reorganization is needed to reach the TS. Although millisecond active site motions are lost ...
The role for protein dynamics in the transition states (TS) of enzyme reactions has been debated ove...
Dihydrofolate reductase (DHFR) from Escherichia coli has long served as a model enzyme with which to...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...
ABSTRACT: Isotopic substitution (15N, 13C, 2H) of a catalytically compromised variant of Escherichia...
Isotopic substitution (15N, 13C, 2H) of a catalytically compromised variant of Escherichia coli dihy...
The question of whether protein motions play a role in the chemical step of enzymatic catalysis has ...
Dihydrofolate reductase (DHFR) catalyzes the reduction of dihydrofolate (DHF) to tetrahydrofolate (T...
Residues M42 and G121 of Escherichia coli dihydrofolate reductase (ecDHFR) are on opposite sides of ...
Dihydrofolate reductase (DHFR) maintains the intracellular pool of tetrahydrofolate through catalysi...
A significant contemporary question in enzymology involves the role of protein dynamics and hydrogen...
ABSTRACT: The role of fast protein dynamics in enzyme catalysis has been of great interest in the pa...
Dihydrofolate reductase (DHFR) is often used as a model system to study the relation between protein...
To elucidate the role of a flexible loop in the stability and function of Escherichia coli dihydrofo...
One of the most intriguing questions in modern enzymology is whether enzyme dynamics evolved to enha...
We report here solvent kinetic isotope effects for two dihydrofolate reductases, namely the monomeri...
The role for protein dynamics in the transition states (TS) of enzyme reactions has been debated ove...
Dihydrofolate reductase (DHFR) from Escherichia coli has long served as a model enzyme with which to...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...
ABSTRACT: Isotopic substitution (15N, 13C, 2H) of a catalytically compromised variant of Escherichia...
Isotopic substitution (15N, 13C, 2H) of a catalytically compromised variant of Escherichia coli dihy...
The question of whether protein motions play a role in the chemical step of enzymatic catalysis has ...
Dihydrofolate reductase (DHFR) catalyzes the reduction of dihydrofolate (DHF) to tetrahydrofolate (T...
Residues M42 and G121 of Escherichia coli dihydrofolate reductase (ecDHFR) are on opposite sides of ...
Dihydrofolate reductase (DHFR) maintains the intracellular pool of tetrahydrofolate through catalysi...
A significant contemporary question in enzymology involves the role of protein dynamics and hydrogen...
ABSTRACT: The role of fast protein dynamics in enzyme catalysis has been of great interest in the pa...
Dihydrofolate reductase (DHFR) is often used as a model system to study the relation between protein...
To elucidate the role of a flexible loop in the stability and function of Escherichia coli dihydrofo...
One of the most intriguing questions in modern enzymology is whether enzyme dynamics evolved to enha...
We report here solvent kinetic isotope effects for two dihydrofolate reductases, namely the monomeri...
The role for protein dynamics in the transition states (TS) of enzyme reactions has been debated ove...
Dihydrofolate reductase (DHFR) from Escherichia coli has long served as a model enzyme with which to...
The enzyme DHFR (dihydrofolate reductase) catalyses hydride transfer from NADPH to, and protonation ...