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Selectivity optimization of substituted 1,2,3-triazoles as α7 nicotinic acetylcholine receptor agonists

Academic Article
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Overview

authors

  • Arunrungvichian, K.
  • Fokin, Valery
  • Vajragupta, O.
  • Taylor, P.

publication date

  • August 2015

journal

  • ACS Chemical Neuroscience  Journal

abstract

  • Three series of substituted anti-1,2,3-triazoles (IND, PPRD, and QND), synthesized by cycloaddition from azide and alkyne building blocks, were designed to enhance selectivity and potency profiles of a lead ?7 nicotinic acetylcholine receptor (?7-nAChR) agonist, TTIn-1. Designed compounds were synthesized and screened for affinity by a radioligand binding assay. Their functional characterization as agonists and antagonists was performed by fluorescence resonance energy transfer assay using cell lines expressing transfected cDNAs, ?7-nAChRs, ?4?2-nAChRs, and 5HT3A receptors, and a fluorescence cell reporter. In the IND series, a tropane ring of TTIn-1, substituted at N1, was replaced by mono- and bicyclic amines to vary length and conformational flexibility of a carbon linker between nitrogen atom and N1 of the triazole. Compounds with a two-carbon atom linker optimized binding with Kd's at the submicromolar level. Further modification at the hydrophobic indole of TTIn-1 was made in PPRD and QND series by fixing the amine center with the highest affinity building blocks in the IND series. Compounds from IND and PPRD series are selective as agonists for the ?7-nAChRs over ?4?2-nAChRs and 5HT3A receptors. Lead compounds in the three series have EC50's between 28 and 260 nM. Based on the EC50, affinity, and selectivity determined from the binding and cellular responses, two of the leads have been advanced to behavioral studies described in the companion article (DOI: 10.1021/acschemneuro.5b00059).
  • Three series of substituted anti-1,2,3-triazoles (IND, PPRD, and QND), synthesized by cycloaddition from azide and alkyne building blocks, were designed to enhance selectivity and potency profiles of a lead α7 nicotinic acetylcholine receptor (α7-nAChR) agonist, TTIn-1. Designed compounds were synthesized and screened for affinity by a radioligand binding assay. Their functional characterization as agonists and antagonists was performed by fluorescence resonance energy transfer assay using cell lines expressing transfected cDNAs, α7-nAChRs, α4β2-nAChRs, and 5HT3A receptors, and a fluorescence cell reporter. In the IND series, a tropane ring of TTIn-1, substituted at N1, was replaced by mono- and bicyclic amines to vary length and conformational flexibility of a carbon linker between nitrogen atom and N1 of the triazole. Compounds with a two-carbon atom linker optimized binding with Kd's at the submicromolar level. Further modification at the hydrophobic indole of TTIn-1 was made in PPRD and QND series by fixing the amine center with the highest affinity building blocks in the IND series. Compounds from IND and PPRD series are selective as agonists for the α7-nAChRs over α4β2-nAChRs and 5HT3A receptors. Lead compounds in the three series have EC50's between 28 and 260 nM. Based on the EC50, affinity, and selectivity determined from the binding and cellular responses, two of the leads have been advanced to behavioral studies described in the companion article (DOI: 10.1021/acschemneuro.5b00059).

subject areas

  • Dose-Response Relationship, Drug
  • Drug Design
  • Drug Evaluation, Preclinical
  • Fluorescence Resonance Energy Transfer
  • HEK293 Cells
  • Humans
  • Models, Chemical
  • Molecular Structure
  • Nicotinic Agonists
  • Nicotinic Antagonists
  • Radioligand Assay
  • Receptors, Nicotinic
  • Receptors, Serotonin, 5-HT3
  • Transfection
  • Triazoles
  • alpha7 Nicotinic Acetylcholine Receptor
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Research

keywords

  • Neurologic disorders
  • alpha 7-nAChRs
  • click-chemistry
  • cycloaddition reactions
  • nicotinic acetylcholine receptors
  • pentameric ligand-gated ion channels
  • triazole
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Identity

International Standard Serial Number (ISSN)

  • 1948-7193

Digital Object Identifier (DOI)

  • 10.1021/acschemneuro.5b00058

PubMed ID

  • 25932897
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Additional Document Info

start page

  • 1317

end page

  • 1330

volume

  • 6

issue

  • 8

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