3-(4-hydroxy-2-methoxybenzylidene)anabaseine and 3-(2-4-dimethoxybenzylidene)anabaseine

3-(4-hydroxy-2-methoxybenzylidene)anabaseine has been researched along with 3-(2-4-dimethoxybenzylidene)anabaseine* in 1 studies

Other Studies

1 other study(ies) available for 3-(4-hydroxy-2-methoxybenzylidene)anabaseine and 3-(2-4-dimethoxybenzylidene)anabaseine

ArticleYear
Structural determinants for interaction of partial agonists with acetylcholine binding protein and neuronal alpha7 nicotinic acetylcholine receptor.
    The EMBO journal, 2009, Oct-07, Volume: 28, Issue:19

    The pentameric acetylcholine-binding protein (AChBP) is a soluble surrogate of the ligand binding domain of nicotinic acetylcholine receptors. Agonists bind within a nest of aromatic side chains contributed by loops C and F on opposing faces of each subunit interface. Crystal structures of Aplysia AChBP bound with the agonist anabaseine, two partial agonists selectively activating the alpha7 receptor, 3-(2,4-dimethoxybenzylidene)-anabaseine and its 4-hydroxy metabolite, and an indole-containing partial agonist, tropisetron, were solved at 2.7-1.75 A resolution. All structures identify the Trp 147 carbonyl oxygen as the hydrogen bond acceptor for the agonist-protonated nitrogen. In the partial agonist complexes, the benzylidene and indole substituent positions, dictated by tight interactions with loop F, preclude loop C from adopting the closed conformation seen for full agonists. Fluctuation in loop C position and duality in ligand binding orientations suggest molecular bases for partial agonism at full-length receptors. This study, while pointing to loop F as a major determinant of receptor subtype selectivity, also identifies a new template region for designing alpha7-selective partial agonists to treat cognitive deficits in mental and neurodegenerative disorders.

    Topics: Acetylcholine; Anabasine; Animals; Aplysia; Benzylidene Compounds; Carrier Proteins; Crystallography, X-Ray; Humans; Hydrogen-Ion Concentration; Indoles; Models, Molecular; Nicotinic Agonists; Protein Binding; Protein Conformation; Pyridines; Tropisetron

2009