Positive allosteric modulation of human muscarinic M1 receptor expressed in CHONFAT cells assessed as potentiation of acetylcholine-induced calcium mobilization at 0.1 uM preincubated for 4 mins measured after 1 hr by FLIPR assay relative to control - BioAssay Summary
One approach to ameliorate the cognitive decline in Alzheimer's disease (AD) has been to restore neuronal signaling from the basal forebrain cholinergic system via the activation of the M(1) muscarinic receptor. A number of nonselective M(1) muscarinic agonists have previously shown positive effects on cognitive behaviors in AD patients, but were limited due to cholinergic adverse events thought more ..
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 Tested Compounds
 Tested Compounds
All(1)
 
 
Unspecified(1)
 
 
 Tested Substances
 Tested Substances
All(1)
 
 
Unspecified(1)
 
 
AID: 607272
Data Source: ChEMBL (757283)
Depositor Category: Literature, Extracted
BioAssay Version:
Deposit Date: 2012-04-30
Modify Date: 2013-05-15

Data Table (Complete):           All
Target
Sequence: RecName: Full=Muscarinic acetylcholine receptor M1
Description ..   
Protein Family: Serpentine type 7TM GPCR chemoreceptor Srx
Comment ..   

Gene:CHRM1     Related Protein 3D Structures
Tested Compound:
Description:
Title: Discovery of a selective allosteric M1 receptor modulator with suitable development properties based on a quinolizidinone carboxylic acid scaffold.

Abstract: One approach to ameliorate the cognitive decline in Alzheimer's disease (AD) has been to restore neuronal signaling from the basal forebrain cholinergic system via the activation of the M(1) muscarinic receptor. A number of nonselective M(1) muscarinic agonists have previously shown positive effects on cognitive behaviors in AD patients, but were limited due to cholinergic adverse events thought to be mediated by the activation of the M(2) to M(5) subtypes. One strategy to confer selectivity for M(1) is the identification of positive allosteric modulators, which would target an allosteric site on the M(1) receptor rather than the highly conserved orthosteric acetylcholine binding site. Quinoline carboxylic acids have been previously identified as highly selective M(1) positive allosteric modulators with good pharmacokinetic and in vivo properties. Herein is described the optimization of a novel quinolizidinone carboxylic acid scaffold with 4-cyanopiperidines being a key discovery in terms of enhanced activity. In particular, modulator 4i gave high plasma free fractions, enhanced central nervous system (CNS) exposure, was efficacious in a rodent in vivo model of cognition, and afforded good physicochemical properties suitable for further preclinical evaluation.
(PMID: 21682298)
Categorized Comment
ChEMBL Assay Type: Binding

ChEMBL Assay Data Source: Scientific Literature

ChEMBL Target ID: 61

ChEMBL target type: Target is a single protein chain

Result Definitions
TIDNameDescriptionHistogramTypeUnit
OutcomeThe BioAssay activity outcomeOutcome
1FC activity commentFC activity commentString
2FC standard flagFC standard flagInteger
3FC qualifierFC qualifierString
4FC published valueFC published valueFloat
5FC standard valueFC standard valueFloat

Data Table (Concise)
Classification
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