The Muscarinic Acetylcholine Receptor Agonist BuTAC Mediates Antipsychotic-Like Effects via the M4 Subtype

被引:0
作者
Marla L Watt
Linda Rorick-Kehn
David B Shaw
Karen M Knitowski
Anne T Quets
Amy K Chesterfield
David L McKinzie
Christian C Felder
机构
[1] Lilly Research Laboratories,
[2] Eli Lilly,undefined
[3] Lilly Corporate Center,undefined
来源
Neuropsychopharmacology | 2013年 / 38卷
关键词
BuTAC; muscarinic receptors; acetylcholine; haloperidol; clozapine; conditioned avoidance response paradigm;
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学科分类号
摘要
The generation of muscarinic acetylcholine receptor (mAChR) subtype-selective compounds has been challenging, requiring use of nonpharmacological approaches, such as genetically engineered animals, to deepen our understanding of the potential that members of the muscarinic receptor subtype family hold as therapeutic drug targets. The muscarinic receptor agonist ‘BuTAC’ was previously shown to exhibit efficacy in animal models of psychosis, although the particular receptor subtype(s) responsible for such activity was unclear. Here, we evaluate the in vitro functional agonist and antagonist activity of BuTAC using an assay that provides a direct measure of G protein activation. In addition, we employ the conditioned avoidance response paradigm, an in vivo model predictive of antipsychotic activity, and mouse genetic deletion models to investigate which presynaptic mAChR subtype mediates the antipsychotic-like effects of BuTAC. Our results show that, in vitro, BuTAC acts as a full agonist at the M2AChR and a partial agonist at the M1 and M4 receptors, with full antagonist activity at M3- and M5AChRs. In the mouse conditioned avoidance response (CAR) assay, BuTAC exhibits an atypical antipsychotic-like profile by selectively decreasing avoidance responses at doses that do not induce escape failures. CAR results using M2−/−, M4−/−, and M2/M4 (M2/M4−/−) mice found that the effects of BuTAC were near completely lost in M2/M4−/− double-knockout mice and potency of BuTAC was right-shifted in M4−/− as compared with wild-type and M2−/− mice. The M2/M4−/− mice showed no altered sensitivity to the antipsychotic effects of either haloperidol or clozapine, suggesting that these compounds mediate their actions in CAR via a non-mAChR-mediated mechanism. These data support a role for the M4AChR subtype in mediating the antipsychotic-like activity of BuTAC and implicate M4AChR agonism as a potential novel therapeutic mechanism for ameliorating symptoms associated with schizophrenia.
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页码:2717 / 2726
页数:9
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共 210 条
[1]  
Arnsten AF(2011)Catecholamine influences on dorsolateral prefrontal cortical networks Biol Psychiatry 69 e89-e99
[2]  
Bernard V(1992)Phenotypical characterization of the rat striatal neurons expressing muscarinic receptor genes J Neurosci 12 3591-3600
[3]  
Normand E(1992)Antagonism by antimuscarinic and neuroleptic compounds at the five cloned human muscarinic cholinergic receptors expressed in Chinese hamster ovary cells J Pharmacol Exp Ther 260 576-580
[4]  
Bloch B(2003)Role of specific muscarinic receptor subtypes in cholinergic parasympathomimetic responses, Eur J Neurosci 17 1403-1410
[5]  
Bolden C(2002) phosphoinositide hydrolysis, and pilocarpine-induced seizure activity Curr Drug Targets CNS Neurol Disord 1 163-181
[6]  
Cusack B(2003)Muscarinic receptors as a target for drugs treating schizophrenia Neurochem Res 28 437-442
[7]  
Richelson E(1998)Use of M1-M5 muscarinic receptor knockout mice as novel tools to delineate the physiological roles of the muscarinic cholinergic system Eur J Pharmacol 356 109-119
[8]  
Bymaster FP(2008)Unexpected antipsychotic-like activity with the muscarinic receptor ligand (5R,6R)6-(3-propylthio-1,2,5-thiadiazol-4-yl)-1-azabicyclo[3.2.1]octane Proc Natl Acad Sci USA 105 10978-10983
[9]  
Carter PA(1999)Allosteric modulation of the muscarinic M4 receptor as an approach to treating schizophrenia J Pharmacol Exp Ther 289 946-955
[10]  
Yamada M(2011)Determination of [35 S]guanosine-5′-O-(3-thio)triphosphate binding mediated by cholinergic muscarinic receptors in membranes from Chinese hamster ovary cells and rat striatum using an anti-G protein scintillation proximity assay J Neurosci 31 5905-5908