Recent single-molecule enzymology measurements with improved statistics have demonstrated that a single enzyme molecule exhibits large temporal fluctuations of the turnover rate constant at a broad range of time scales (from 1 ms to 100 s). The rate constant fluctuations, termed as dynamic disorder, are associated with fluctuations of the protein conformations observed on the same time scales. We discuss the unique information extractable from these experiments and the reconciliation of these observations with ensemble-averaged Michaelis-Menten equation. A theoretical model based on the generalized Langevin equation (GLE) treatment of Kramers ' barrier crossing problem for chemical reactions accounts naturally for the observation of dy...
Single enzyme molecules display inevitable, stochastic fluctuations in their catalytic activity. In ...
A protein undergoes conformational dynamics with multiple time scales, which results in fluctuating ...
Enzymatic reactions often involve slow conformational changes, with reaction cycles that sometimes r...
This paper summarizes our present theoretical understanding of single-molecule kinetics associated w...
A growing amount of evidence over the last two decades points to the fact that many enzymes exhibit ...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
Single-molecule equations for the Michaelis-Menten [Biochem. Z. 49, 333 1913] mechanism of enzyme ac...
Enzymes are biological catalysts vital to life processes and have attracted century-long investigati...
Enzymes are dynamic entities: both their conformation and catalytic activity fluctuate over time. Wh...
A growing amount of evidence over the last two decades points to the fact that many enzymes exhibit ...
Enzymes are biological catalysts vital to life processes and have attracted century-long investigati...
Enzymes are biological catalysts vital to life processes and have attracted century-long investigati...
Enzymes are biological catalysts vital to life processes and have attracted century-long investigati...
Single-molecule equations for the Michaelis-Menten [Biochem. Z. 49, 333 1913] mechanism of enzyme ac...
Single enzyme molecules display inevitable, stochastic fluctuations in their catalytic activity. In ...
A protein undergoes conformational dynamics with multiple time scales, which results in fluctuating ...
Enzymatic reactions often involve slow conformational changes, with reaction cycles that sometimes r...
This paper summarizes our present theoretical understanding of single-molecule kinetics associated w...
A growing amount of evidence over the last two decades points to the fact that many enzymes exhibit ...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
Single-molecule equations for the Michaelis-Menten [Biochem. Z. 49, 333 1913] mechanism of enzyme ac...
Enzymes are biological catalysts vital to life processes and have attracted century-long investigati...
Enzymes are dynamic entities: both their conformation and catalytic activity fluctuate over time. Wh...
A growing amount of evidence over the last two decades points to the fact that many enzymes exhibit ...
Enzymes are biological catalysts vital to life processes and have attracted century-long investigati...
Enzymes are biological catalysts vital to life processes and have attracted century-long investigati...
Enzymes are biological catalysts vital to life processes and have attracted century-long investigati...
Single-molecule equations for the Michaelis-Menten [Biochem. Z. 49, 333 1913] mechanism of enzyme ac...
Single enzyme molecules display inevitable, stochastic fluctuations in their catalytic activity. In ...
A protein undergoes conformational dynamics with multiple time scales, which results in fluctuating ...
Enzymatic reactions often involve slow conformational changes, with reaction cycles that sometimes r...