AbstractWe examine here the dynamics of forming the Michaelis complex of the enzyme lactate dehydrogenase by characterizing the binding kinetics and thermodynamics of oxamate (a substrate mimic) to the binary lactate dehydrogenase/NADH complex over multiple timescales, from nanoseconds to tens of milliseconds. To access such a wide time range, we employ standard stopped-flow kinetic approaches (slower than 1ms) and laser-induced temperature-jump relaxation spectroscopy (10 ns–10ms). The emission from the nicotinamide ring of NADH is used as a marker of structural transformations. The results are well explained by a kinetic model that has binding taking place via a sequence of steps: the formation of an encounter complex in a bimolecular ste...
As a key enzyme for glycolysis, lactate dehydrogenase (LDH) remains as a topic of great interest in ...
We have studied the dependence of the chemical reaction mechanism of L-lactate dehydrogenase (LDH) o...
Enzymes are immensely powerful and efficient heterogenous catalysts which are essential for life. As...
AbstractWe examine here the dynamics of forming the Michaelis complex of the enzyme lactate dehydrog...
AbstractThe dynamical nature of the binding of a substrate surrogate to lactate dehydrogenase is exa...
AbstractEmploying temperature-jump relaxation spectroscopy, we investigate the kinetics and thermody...
AbstractThe dynamic nature of the interconversion of pyruvate to lactate as catalyzed by lactate deh...
AbstractWe have carried out a series of studies on the binding of a substrate mimic to the enzyme la...
AbstractRecent experimental studies suggest that lactate dehydrogenase (LDH) binds its substrate via...
It has long been recognized that the structure of a protein creates a hierarchy of conformations int...
The mechanism of thermal adaptation of enzyme function at the molecular level is poorly understood b...
ABSTRACT: Lactate dehydrogenase (LDH) catalyzes the interconversion between pyruvate and lactate wit...
Lactate dehydrogenase (LDH) catalyzes the interconversion of pyruvate and lactate. Recent isotope-ed...
Thermodynamic and kinetic experiments have been performed at ionic strength 0.30 to elucidate the re...
AbstractHigh concentrations of ketoacid substrates inhibit most natural hydroxyacid dehydrogenases d...
As a key enzyme for glycolysis, lactate dehydrogenase (LDH) remains as a topic of great interest in ...
We have studied the dependence of the chemical reaction mechanism of L-lactate dehydrogenase (LDH) o...
Enzymes are immensely powerful and efficient heterogenous catalysts which are essential for life. As...
AbstractWe examine here the dynamics of forming the Michaelis complex of the enzyme lactate dehydrog...
AbstractThe dynamical nature of the binding of a substrate surrogate to lactate dehydrogenase is exa...
AbstractEmploying temperature-jump relaxation spectroscopy, we investigate the kinetics and thermody...
AbstractThe dynamic nature of the interconversion of pyruvate to lactate as catalyzed by lactate deh...
AbstractWe have carried out a series of studies on the binding of a substrate mimic to the enzyme la...
AbstractRecent experimental studies suggest that lactate dehydrogenase (LDH) binds its substrate via...
It has long been recognized that the structure of a protein creates a hierarchy of conformations int...
The mechanism of thermal adaptation of enzyme function at the molecular level is poorly understood b...
ABSTRACT: Lactate dehydrogenase (LDH) catalyzes the interconversion between pyruvate and lactate wit...
Lactate dehydrogenase (LDH) catalyzes the interconversion of pyruvate and lactate. Recent isotope-ed...
Thermodynamic and kinetic experiments have been performed at ionic strength 0.30 to elucidate the re...
AbstractHigh concentrations of ketoacid substrates inhibit most natural hydroxyacid dehydrogenases d...
As a key enzyme for glycolysis, lactate dehydrogenase (LDH) remains as a topic of great interest in ...
We have studied the dependence of the chemical reaction mechanism of L-lactate dehydrogenase (LDH) o...
Enzymes are immensely powerful and efficient heterogenous catalysts which are essential for life. As...