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Functional Screening of Drug Target GenesM1 Muscarinic Acetylcholine Receptor Phenotypes in Degenerative Dementias

 

作者: David M Weiner,   Matilda W Goodman,   Tonya M Colpitts,   Michelle A Feddock,   Kate L Duggento,   Norman R Nash,   Allan I Levey,   Mark R Brann,  

 

期刊: American Journal of PharmacoGenomics  (ADIS Available online 2004)
卷期: Volume 4, issue 2  

页码: 119-128

 

ISSN:1175-2203

 

年代: 2004

 

出版商: ADIS

 

关键词: Alzheimer's disease;Dementia;Acetylcholine receptor agonists, therapeutic use;Acetylcholine receptor antagonists, therapeutic use;Genetic polymorphism

 

数据来源: ADIS

 

摘要:

Background and objectivesA number of recent studies surveying single nucleotide polymorphisms within the exonic regions of human genes have revealed a significant number of such variants, including many non-synonymous variants. This highlights the need to directly identify, within individual clinically well-defined patients, those variants that alter protein function as well as structure. We report on the development of a novel phenotypic screening process that combines high-throughput molecular cloning techniques with functional expression utilizing the cell-based assay R-SAT.MethodsWe applied the phenotypic screening process to an analysis of the m1 muscarinic acetylcholine receptor (CHRM1) gene in a cohort of 74 individuals, including 48 diagnosed with neurodegenerative disease, primarily Alzheimer disease, who have been stratified according to their clinical response to the acetylcholinesterase inhibitor donepezil. Phenotypic screening of theCHRM1gene involved PCR-based amplification from genomic DNA and heterologous expression in mammalian cells.ResultsPhenotypic screening yielded functional responses to the agonist carbachol displaying a mean potency (−pEC50± standard deviation) of 5.8 ± 0.2, which did not differ from that observed with expression of the wild-type receptor gene (6.0 ± 0.3). No altered levels of constitutive receptor activity were observed. Dideoxy sequencing did not reveal any non-synonymous variants in the coding exon of this gene within this clinical cohort, while detecting three synonymous variants.ConclusionThe results confirm that the m1 receptor gene (CHRM1) is not highly polymorphic in the human population, suggesting that genetic variation within the coding exon of this gene is not a contributing factor to the clinical variability observed during treatment of dementia with cholinergic enhancement therapies.

 

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