Helvetica Chimica Acta · 2004 · 17 citations · 27 references
Combinatorial ChemistryMedicinal ChemistryHeterocyclicBiochemistryNatural SciencesMedicineSuitable Piperidine PrecursorsOrganic ChemistryAbstract PhosphorylationRecognition ConformationHeterocycle ChemistryRigid Acetylcholine MimeticsPharmacologyPharmaceutical ChemistryBiomolecular EngineeringDrug Discovery
Abstract Phosphorylation of suitable piperidine precursors yielded a series of novel decalin‐type O,N,P‐heterocycles. The title compounds, P(3)‐axially and P(3)‐equatorially X‐substituted, cis‐ and trans‐ configurated 2,4‐dioxa‐7‐aza‐, 2,4‐dioxa‐8‐aza‐, and 2,4‐dioxa‐9‐aza‐3‐phosphabicyclo[4.4.0]decane 3‐oxides (X=Cl, F, 4‐nitrophenoxy, and 2,4‐dinitrophenoxy), are configuratively fixed and conformationally constrained P‐analogues of acetylcholine and as such represent acetylcholine (7‐aza and 9‐aza isomers) or γ ‐homo‐acetylcholine mimetics (8‐aza isomers). Being irreversible inhibitors of acetylcholinesterase (AChE), the compounds are considered to be suitable probes for the investigation of the stereochemical course of the inhibition reaction by 31 P‐NMR spectroscopy. Moreover, the design of these mimetics will enable studies of molecular interactions with AChE, in particular, the recognition conformation of acetylcholine.
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Enzymatic Catalysis and Transition-State Theory
Gustav E. Lienhard · Science · 1973 · 508 citations
B. S. Hartley · Annual Review of Biochemistry · 1960 · 354 citations