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Tytuł pozycji:

The binding mode of vilazodone in the human serotonin transporter elucidated by ligand docking and molecular dynamics simulations.

Tytuł:
The binding mode of vilazodone in the human serotonin transporter elucidated by ligand docking and molecular dynamics simulations.
Autorzy:
Zhang Y; School of Pharmaceutical Sciences, Chongqing University, Chongqing 401331, China. .
Zheng G
Fu T
Hong J
Li F
Yao X
Xue W
Zhu F
Źródło:
Physical chemistry chemical physics : PCCP [Phys Chem Chem Phys] 2020 Mar 07; Vol. 22 (9), pp. 5132-5144. Date of Electronic Publication: 2020 Feb 19.
Typ publikacji:
Journal Article
Język:
English
Imprint Name(s):
Original Publication: Cambridge [England] : Royal Society of Chemistry, c1999-
MeSH Terms:
Molecular Docking Simulation*
Molecular Dynamics Simulation*
Serotonin Plasma Membrane Transport Proteins/*chemistry
Vilazodone Hydrochloride/*chemistry
Allosteric Site ; Antidepressive Agents/chemistry ; Antidepressive Agents/metabolism ; Binding Sites ; Humans ; Ligands ; Protein Binding ; Serotonin Plasma Membrane Transport Proteins/metabolism ; Thermodynamics ; Vilazodone Hydrochloride/metabolism
Substance Nomenclature:
0 (Antidepressive Agents)
0 (Ligands)
0 (Serotonin Plasma Membrane Transport Proteins)
U8HTX2GK8J (Vilazodone Hydrochloride)
Entry Date(s):
Date Created: 20200220 Date Completed: 20200317 Latest Revision: 20200317
Update Code:
20240105
DOI:
10.1039/c9cp05764a
PMID:
32073004
Czasopismo naukowe
Vilazodone is a novel antidepressant used for the treatment of major depressive disorder (MDD) with a primary action mechanism of inhibiting the human serotonin reuptake transporter (hSERT) and acting as a 5-HT 1A receptor partial agonist. The interaction between vilazodone and the 5-HT 1A receptor has been reported, however, the binding mode of vilazodone in the hSERT remains elusive. In the current study, to elucidate the molecular mechanism of vilazodone binding in the hSERT, the drug and its five analogs were docked into the hSERT crystal structure as initial conformations and were sampled by 400 ns molecular dynamics (MD) simulations. Through the analysis of the profiles of protein-ligand binding free energies, interaction fingerprints, and conformational rearrangements, the binding mode of vilazodone in the hSERT was revealed. As a result, unlike the classical antidepressants located in the S1 site of the hSERT, vilazodone adopted a linear pose in the binding pocket. Its arylpiperazine fragment occupies the central site (S1) and interacts with Y95, D98, I172, Y176, F335, F341, S438, and T439, while the indole fragment extends to the allosteric site (S2) via interacting with the ionic switch (R104/E403) between the two sites. The new insights obtained are not only helpful in understanding the binding mode of vilazodone in the hSERT, but also provide valuable guidance to the discovery of novel antidepressant drugs.

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