Protein dynamics have controversially been proposed to be at the heart of enzyme catalysis, but identification and analysis of dynamical effects in enzyme-catalyzed reactions have proved very challenging. Here, we tackle this question by comparing an enzyme with its heavy (15N, 13C, 2H substituted) counterpart, providing a subtle probe of dynamics. The crucial hydride transfer step of the reaction (the chemical step) occurs more slowly in the heavy enzyme. A combination of experimental results, quantum mechanics/molecular mechanics simulations, and theoretical analyses identify the origins of the observed differences in reactivity. The generally slightly slower reaction in the heavy enzyme reflects differences in environmental coupling to t...
Mixed quantum/classical molecular dynamics simulations of the hydride transfer reaction catalyzed by...
Dihydrofolate reductase from Escherichia coli (ecDHFR) serves as a model system for investigating th...
ABSTRACT: The role of fast protein dynamics in enzyme catalysis has been of great interest in the pa...
Protein dynamics have controversially been proposed to be at the heart of enzyme catalysis, but iden...
Protein dynamics have controversially been proposed to be at the heart of enzyme catalysis, but iden...
Protein dynamics have controversially been proposed to be at the heart of enzyme catalysis, but iden...
Protein dynamics have controversially been proposed to be at the heart of enzyme catalysis, but iden...
Protein dynamics have controversially been proposed to be at the heart of enzyme catalysis, but iden...
The role of protein motions in promoting the chemical step of enzyme catalysed reactions remains a s...
ABSTRACT: Enzyme catalysis has been studied extensively, but the role of enzyme dynamics in the cata...
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 ...
The role of protein motions in promoting the chemical step of enzyme catalysed reactions remains a s...
Much work has gone into understanding the physical basis of the enormous catalytic power of enzymes ...
Mixed quantum/classical molecular dynamics simulations of the hydride transfer reaction catalyzed by...
Dihydrofolate reductase from Escherichia coli (ecDHFR) serves as a model system for investigating th...
ABSTRACT: The role of fast protein dynamics in enzyme catalysis has been of great interest in the pa...
Protein dynamics have controversially been proposed to be at the heart of enzyme catalysis, but iden...
Protein dynamics have controversially been proposed to be at the heart of enzyme catalysis, but iden...
Protein dynamics have controversially been proposed to be at the heart of enzyme catalysis, but iden...
Protein dynamics have controversially been proposed to be at the heart of enzyme catalysis, but iden...
Protein dynamics have controversially been proposed to be at the heart of enzyme catalysis, but iden...
The role of protein motions in promoting the chemical step of enzyme catalysed reactions remains a s...
ABSTRACT: Enzyme catalysis has been studied extensively, but the role of enzyme dynamics in the cata...
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 ...
The role of protein motions in promoting the chemical step of enzyme catalysed reactions remains a s...
Much work has gone into understanding the physical basis of the enormous catalytic power of enzymes ...
Mixed quantum/classical molecular dynamics simulations of the hydride transfer reaction catalyzed by...
Dihydrofolate reductase from Escherichia coli (ecDHFR) serves as a model system for investigating th...
ABSTRACT: The role of fast protein dynamics in enzyme catalysis has been of great interest in the pa...