Kulakova_2021_Biomed.Khim_67_300

Reference

Title : [Molecular mechanism of chromogenic substrate hydrolysis in the active site of human carboxylesterase-1] - Kulakova_2021_Biomed.Khim_67_300
Author(s) : Kulakova AM , Khrenova MG , Nemukhin AV
Ref : Biomed Khim , 67 :300 , 2021
Abstract :

Human carboxylesterases are involved in the protective processes of detoxification during the hydrolytic metabolism of xenobiotics. Knowledge of the molecular mechanisms of substrates hydrolysis in the enzymes active site is necessary for the rational drug design. In this work, the molecular mechanism of the hydrolysis reaction of para-nitrophenyl acetate in the active site of human carboxylesterase was determined using modern methods of molecular modeling. According to the combined method of quantum mechanics/molecular mechanics calculations, the chemical reaction occurs within four elementary steps, including two steps of the acylation stage, and two steps of the deacylation stage. All elementary steps have low energy barriers, with the gradual lowering of the intermediate energies that stimulates reaction in the forward direction. The molecular docking was used to estimate the binding constants of the enzyme-substrate complex and the dissociation constant of enzyme-product complexes. The effective kinetic parameters of the enzymatic hydrolysis in the active site of carboxylesterase are determined by numerical solution of the differential kinetic equations.

PubMedSearch : Kulakova_2021_Biomed.Khim_67_300
PubMedID: 34142538

Related information

Citations formats

Kulakova AM, Khrenova MG, Nemukhin AV (2021)
[Molecular mechanism of chromogenic substrate hydrolysis in the active site of human carboxylesterase-1]
Biomed Khim 67 :300

Kulakova AM, Khrenova MG, Nemukhin AV (2021)
Biomed Khim 67 :300