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Structural and functional interaction of (±)-2-(N-tert-butylamino)-3′-iodo-4′-azidopropiophenone,a photoreactive bupropion derivative,with nicotinic acetylcholine receptors
Authors:Hugo R. Arias  Dominik Feuerbach  Katarzyna M. Targowska-Duda  Shaili Aggarwal  David J. Lapinsky  Krzysztof Jozwiak
Affiliation:1. Department of Medical Education, College of Medicine, California Northstate University, Elk Grove, CA 95757, USA;2. Novartis Institutes for Biomedical Research, Basel, Switzerland;3. Department of Chemistry, Medical University of Lublin, 20-093 Lublin, Poland;4. Division of Pharmaceutical Sciences, Mylan School of Pharmacy, Duquesne University, Pittsburgh, PA 15282, USA
Abstract:The pharmacological properties of (±)-2-(N-tert-butylamino)-3′-iodo-4′-azidopropiophenone [(±)-SADU-3-72], a photoreactive analog of bupropion (BP), were characterized at different muscle nicotinic acetylcholine receptors (AChRs) by functional and structural approaches. Ca2+ influx results indicate that (±)-SADU-3-72 is 17- and 6-fold more potent than BP in inhibiting human (h) embryonic (hα1β1γδ) and adult (hα1β1εδ) muscle AChRs, respectively. (±)-SADU-3-72 binds with high affinity to the [3H]TCP site within the resting or desensitized Torpedo AChR ion channel, whereas BP has higher affinity for desensitized AChRs. Molecular docking results indicate that both SADU-3-72 enantiomers interact with the valine (position 13′) and serine (position 6′) rings. However, an additional domain, between the outer (position 20′) and valine rings, is observed in Torpedo AChR ion channels. Our results indicate that the azido group of (±)-SADU-3-72 may enhance its interaction with polar groups and the formation of hydrogen bonds at AChRs, thus supporting the observed higher potency and affinity of (±)-SADU-3-72 compared to BP. Collectively our results are consistent with a model where BP/SADU-3-72 and TCP bind to overlapping sites within the lumen of muscle AChR ion channels. Based on these results, we believe that (±)-SADU-3-72 is a promising photoprobe for mapping the BP binding site, especially within the resting AChR ion channel.
Keywords:AChR, nicotinic acetylcholine receptor   NCA, noncompetitive antagonist   α-BTx, α-bungarotoxin   BP, (±  )-bupropion [(±  )-2-(tert-butylamino)-1-(3-chlorophenyl)propan-1-one]    )-SADU-3-72, (±  )-2-(N-tert-butylamino)-3&prime  -iodo-4&prime  -azidopropiophenone   PCP, phencyclidine   CCh, carbamylcholine   [3H]TCP, [piperidyl-3,4-3H(N)]-(N-(1-(2-thienyl)cyclohexyl)-3,4-piperidine)   RT, room temperature   BS, binding saline   Ki, inhibition constant   Kd, dissociation constant   IC50, ligand concentration that inhibits 50% binding or Ca2+ influx   nH, hill coefficient   DMEM, dulbecco&rsquo  s modified eagle medium   FBS, fetal bovine serum
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