4.6 Article

Synthesis, Structural and Thermal Studies of 3-(1-Benzyl-1,2,3,6-tetrahydropyridin-4-yl)-5-ethoxy-1H-indole (D2AAK1_3) as Dopamine D2 Receptor Ligand

Journal

MOLECULES
Volume 23, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/molecules23092249

Keywords

dopamine D-2 receptor; dopamine D-2 receptor antagonist; molecular modeling; thermal studies; X-ray studies

Funding

  1. National Science Center (NCN, Poland) [2017/27/B/NZ7/01767]
  2. Interdisciplinary Center for Mathematical and Computational Modeling (ICM), Warsaw, Poland [G30-18]
  3. Spanish Ministry of Economy and Competitiveness (MINECO) [SAF2014-57138-C2-1-R]
  4. XUNTA de Galicia (Spain)

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Compound D2AAK1_3 was designed as a modification of the lead structure D2AAK1 (an in vivo active multi-target compound with nanomolar affinity to a number of aminergic GPCRs) and synthesized in the reaction of 5-ethoxyindole and 1-benzyl-4-piperidone. This compound has an affinity to the human dopamine D-2 receptor with K-i of 151 nM. The aim of these studies was the structural and thermal characterization of the compound D2AAK1_3. In particular; X-ray studies; molecular docking and molecular dynamics as well as thermal analysis were performed. The studied compound crystallizes in orthorhombic system; in chiral space group P2(1)2(1)2(1). The compound has a non-planar conformation. The studied compound was docked to the novel X-ray structure of the human dopamine D-2 receptor in the inactive state (PDB ID: 6CM4) and established the main contact between its protonatable nitrogen atom and Asp (3.32) of the receptor. The obtained binding pose was stable in molecular dynamics simulations. Thermal stability of the compound was investigated using the TG-DSC technique in the air atmosphere, while TG-FTIR analyses in air and nitrogen atmospheres were also performed. The studied compound is characterized by good thermal stability. The main volatile products of combustion are the following gases: CO2; H2O toluene and CO while in the case of pyrolysis process in the FTIR spectra; the characteristic bands of NH3; piperidine and indole are additionally observed.

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