Literature DB >> 25650309

M2 Subtype preferring dibenzodiazepinone-type muscarinic receptor ligands: Effect of chemical homo-dimerization on orthosteric (and allosteric?) binding.

Max Keller1, Christian Tränkle2, Xueke She3, Andrea Pegoli3, Günther Bernhardt3, Armin Buschauer3, Roger W Read4.   

Abstract

A series of new dibenzodiazepinone-type muscarinic receptor ligands, including two homo-dimeric compounds, was prepared. Sixteen representative compounds were characterized in equilibrium binding studies with [(3)H]N-methylscopolamine ([(3)H]NMS) at the muscarinic receptor subtype M2, and seven selected compounds were additionally investigated at M1, M3, M4 and M5 with respect to receptor subtype selectivity. The side chain of the known M2 preferring muscarinic receptor antagonist DIBA was widely varied with respect to chain length and type of the basic group (amine, imidazole, guanidine and piperazine). Most of the structural changes were well tolerated with respect to muscarinic receptor binding, determined by displacement of [(3)H]NMS. Compounds investigated at all subtypes shared a similar selectivity profile, which can be summarized as M2>M1≈M4>M3≈M5 (46, 50, 57, 62-64) and M2>M1≈M4>M3>M5 (1, 58). The homo-dimeric dibenzodiazepinone derivatives UNSW-MK250 (63) and UNSW-MK262 (64) exhibited the highest M2 receptor affinities (pIC50=9.0 and 9.2, respectively). At the M2 receptor a steep curve slope of -2 was found for the dimeric ligand 63, which cannot be described according to the law of mass action, suggesting a more complex mechanism of binding. In addition to equilibrium binding studies, for selected ligands, we determined pEC50,diss, an estimate of affinity to the allosteric site of M2 receptors occupied with [(3)H]NMS. Compounds 58 and 62-64 were capable of retarding [(3)H]NMS dissociation by a factor >10 (Emax,diss >92%), with highest potency (pEC50,diss=5.56) residing in the dimeric compound 64. As the monomeric counterpart of 64 was 100 times less potent (62: pEC50,diss=3.59), these data suggest that chemical dimerization of dibenzodiazepinone-type M receptor ligands can enhance allosteric binding.
Copyright © 2015 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  AF-DX 384; Allosteric binding; Antagonists; Dibenzodiazepinones; Dimeric ligands; Muscarinic acetylcholine receptors

Mesh:

Substances:

Year:  2015        PMID: 25650309     DOI: 10.1016/j.bmc.2015.01.015

Source DB:  PubMed          Journal:  Bioorg Med Chem        ISSN: 0968-0896            Impact factor:   3.641


  4 in total

1.  Differently fluorescence-labelled dibenzodiazepinone-type muscarinic acetylcholine receptor ligands with high M2R affinity.

Authors:  Corinna G Gruber; Andrea Pegoli; Christoph Müller; Lukas Grätz; Xueke She; Max Keller
Journal:  RSC Med Chem       Date:  2020-06-08

2.  ArtSeg-Artifact segmentation and removal in brightfield cell microscopy images without manual pixel-level annotations.

Authors:  Mohammed A S Ali; Kaspar Hollo; Tõnis Laasfeld; Jane Torp; Maris-Johanna Tahk; Ago Rinken; Kaupo Palo; Leopold Parts; Dmytro Fishman
Journal:  Sci Rep       Date:  2022-07-06       Impact factor: 4.996

3.  Live-cell microscopy or fluorescence anisotropy with budded baculoviruses-which way to go with measuring ligand binding to M4 muscarinic receptors?

Authors:  Maris-Johanna Tahk; Jane Torp; Mohammed A S Ali; Dmytro Fishman; Leopold Parts; Lukas Grätz; Christoph Müller; Max Keller; Santa Veiksina; Tõnis Laasfeld; Ago Rinken
Journal:  Open Biol       Date:  2022-06-08       Impact factor: 7.124

4.  Heterodimerization of Dibenzodiazepinone-Type Muscarinic Acetylcholine Receptor Ligands Leads to Increased M2R Affinity and Selectivity.

Authors:  Xueke She; Andrea Pegoli; Judith Mayr; Harald Hübner; Günther Bernhardt; Peter Gmeiner; Max Keller
Journal:  ACS Omega       Date:  2017-10-16
  4 in total

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