Structure–kinetic relationship analyses and identification of dominating interactions for optimization of lead compounds should ideally be based on <i>intrinsic</i> rate constants instead of the more easily accessible <i>observed</i> kinetic constants, which also account for binding-linked reactions. The intrinsic rate constants for sulfonamide inhibitors and pharmacologically relevant isoforms of carbonic anhydrase were determined by a novel surface plasmon resonance (SPR) biosensor-based approach, using chemodynamic analysis of binding-linked pH-dependent effects. The observed association rates (<i>k</i><sub>a</sub><sup>obs</sup>) were pH-dependent and correlated with the fraction of deprotonated inhibitor and protonated zinc-bound water ...
The important role of ligand–receptor binding kinetics in drug design and discovery is increasingly ...
The structure-thermodynamics correlation analysis was performed for a series of fluorine- and chlori...
<div><p>The early stage of drug discovery is often based on selecting the highest affinity lead comp...
The aim of this work was to determine the influence of linked protonation effects to the thermodynamic...
The aim of rational drug design is to develop small molecules using a quantitative approach to optim...
Accepted version of the "Kinetic and Structural Insights into the Mechanism of Binding of Sulfonam...
The work presented here is focused on the phenomenon of molecular recognition – the mutual ability o...
In the last three decades, protein and nucleic acid structure determination and comprehension of the...
A growing consensus is emerging that optimizing the drug–target affinity alone under equilibrium con...
Zinc-containing metalloenzyme carbonic anhydrase (CA) binds primary sulfonamides with extremely high...
A quantitative structure-activity relationship study is presented for 20 sulfonamide inhibitors of c...
In the pre-clinical development stages of most drug design campaigns, the equilibrium binding affini...
We introduce a protein-ligand binding database (PLBD) that presents thermodynamic and kinetic data o...
The influence of drug-receptor binding kinetics has often been overlooked during the development of ...
The important role of ligand–receptor binding kinetics in drug design and discovery is increasingly ...
The structure-thermodynamics correlation analysis was performed for a series of fluorine- and chlori...
<div><p>The early stage of drug discovery is often based on selecting the highest affinity lead comp...
The aim of this work was to determine the influence of linked protonation effects to the thermodynamic...
The aim of rational drug design is to develop small molecules using a quantitative approach to optim...
Accepted version of the "Kinetic and Structural Insights into the Mechanism of Binding of Sulfonam...
The work presented here is focused on the phenomenon of molecular recognition – the mutual ability o...
In the last three decades, protein and nucleic acid structure determination and comprehension of the...
A growing consensus is emerging that optimizing the drug–target affinity alone under equilibrium con...
Zinc-containing metalloenzyme carbonic anhydrase (CA) binds primary sulfonamides with extremely high...
A quantitative structure-activity relationship study is presented for 20 sulfonamide inhibitors of c...
In the pre-clinical development stages of most drug design campaigns, the equilibrium binding affini...
We introduce a protein-ligand binding database (PLBD) that presents thermodynamic and kinetic data o...
The influence of drug-receptor binding kinetics has often been overlooked during the development of ...
The important role of ligand–receptor binding kinetics in drug design and discovery is increasingly ...
The structure-thermodynamics correlation analysis was performed for a series of fluorine- and chlori...
<div><p>The early stage of drug discovery is often based on selecting the highest affinity lead comp...