Assessing the Binding of Cholinesterase Inhibitors by
Docking and Molecular Dynamics Studies
Abstract:
In this report we assessed by docking and molecular dynamics
the binding mechanisms of three FDA-approved Alzheimer drugs, inhibitors
of the enzyme acetylcholinesterase (AChE):
donepezil, galantamine and rivastigmine.
Dockings by the softwares Autodock-Vina, PatchDock and Plant
reproduced the docked conformations of the inhibitor-enzyme complexes
within 2 Å of RMSD of the X-ray structure.
Free-energy scores show strong affinity of the inhibitors for
the enzyme binding pocket.
Three independent Molecular Dynamics simulation runs
indicated general stability of donepezil, galantamine and rivastigmine
in their respective enzyme binding pocket (also referred to as gorge)
as well as the tendency to form hydrogen bonds with the water molecules.
The binding of rivastigmine in the Torpedo California AChE binding pocket
is interesting as it eventually undergoes carbamylation and
breaks apart according to the X-ray structure of the complex.
Similarity search in the ZINC database and targeted docking on the gorge region
of the AChE enzyme gave new putative inhibitor molecules
with high predicted binding affinity, suitable for potential biophysical
and biological assessments.