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药物诱导的腺苷酸环化酶致敏作用:用于小分子和siRNA筛选应用的检测流程简化与小型化

Drug-induced sensitization of adenylyl cyclase: assay streamlining and miniaturization for small molecule and siRNA screening applications.

作者信息

Conley Jason M, Brust Tarsis F, Xu Ruqiang, Burris Kevin D, Watts Val J

机构信息

Department of Medicinal Chemistry and Molecular Pharmacology, Purdue University.

出版信息

J Vis Exp. 2014 Jan 27(83):e51218. doi: 10.3791/51218.

Abstract

Sensitization of adenylyl cyclase (AC) signaling has been implicated in a variety of neuropsychiatric and neurologic disorders including substance abuse and Parkinson's disease. Acute activation of Gαi/o-linked receptors inhibits AC activity, whereas persistent activation of these receptors results in heterologous sensitization of AC and increased levels of intracellular cAMP. Previous studies have demonstrated that this enhancement of AC responsiveness is observed both in vitro and in vivo following the chronic activation of several types of Gαi/o-linked receptors including D2 dopamine and μ opioid receptors. Although heterologous sensitization of AC was first reported four decades ago, the mechanism(s) that underlie this phenomenon remain largely unknown. The lack of mechanistic data presumably reflects the complexity involved with this adaptive response, suggesting that nonbiased approaches could aid in identifying the molecular pathways involved in heterologous sensitization of AC. Previous studies have implicated kinase and Gbγ signaling as overlapping components that regulate the heterologous sensitization of AC. To identify unique and additional overlapping targets associated with sensitization of AC, the development and validation of a scalable cAMP sensitization assay is required for greater throughput. Previous approaches to study sensitization are generally cumbersome involving continuous cell culture maintenance as well as a complex methodology for measuring cAMP accumulation that involves multiple wash steps. Thus, the development of a robust cell-based assay that can be used for high throughput screening (HTS) in a 384 well format would facilitate future studies. Using two D2 dopamine receptor cellular models (i.e. CHO-D2L and HEK-AC6/D2L), we have converted our 48-well sensitization assay (>20 steps 4-5 days) to a five-step, single day assay in 384-well format. This new format is amenable to small molecule screening, and we demonstrate that this assay design can also be readily used for reverse transfection of siRNA in anticipation of targeted siRNA library screening.

摘要

腺苷酸环化酶(AC)信号转导的敏化与多种神经精神疾病和神经系统疾病有关,包括药物滥用和帕金森病。Gαi/o偶联受体的急性激活会抑制AC活性,而这些受体的持续激活则会导致AC的异源敏化和细胞内cAMP水平升高。先前的研究表明,在慢性激活包括D2多巴胺受体和μ阿片受体在内的几种类型的Gαi/o偶联受体后,在体外和体内均观察到AC反应性的这种增强。尽管AC的异源敏化在四十年前就首次被报道,但这种现象背后的机制在很大程度上仍然未知。缺乏机制数据可能反映了这种适应性反应的复杂性,这表明无偏倚的方法可能有助于识别参与AC异源敏化的分子途径。先前的研究表明,激酶和Gbγ信号传导是调节AC异源敏化的重叠成分。为了识别与AC敏化相关的独特和额外的重叠靶点,需要开发和验证一种可扩展的cAMP敏化测定法以实现更高的通量。先前研究敏化的方法通常很繁琐,涉及连续的细胞培养维持以及用于测量cAMP积累的复杂方法,该方法涉及多个洗涤步骤。因此,开发一种强大的基于细胞的测定法,可用于384孔板形式的高通量筛选(HTS),将有助于未来的研究。使用两种D2多巴胺受体细胞模型(即CHO-D2L和HEK-AC6/D2L),我们已将我们的48孔敏化测定法(>20步,4-5天)转换为384孔板形式的五步单日测定法。这种新形式适用于小分子筛选,并且我们证明这种测定法设计也可以很容易地用于siRNA的反向转染,以预期进行靶向siRNA文库筛选。

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