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Optical techniques to analyze real-time activation and signaling of G-protein-coupled receptors.

机译:光学技术,用于分析G蛋白偶联受体的实时激活和信号传导。

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摘要

The activation of G-protein-coupled receptors (GPCRs) is traditionally measured either by monitoring downstream physiological events or by membrane-based biochemical assays. Neither of these approaches permits detailed kinetic or spatial analysis of receptor activation and signaling. Recently, several optical techniques have been developed to monitor receptor activation either by using purified reconstituted GPCRs or by observing GPCRs, G proteins and second messengers in intact cells. These techniques are providing, literally, new views on both the mechanistic basis of the signaling process and the kinetic and spatial properties of GPCR-mediated signals. They suggest that agonists can activate GPCRs within milliseconds, that different compounds can induce distinct active conformations of GPCRs, that G-protein activation is the rate-limiting step in GPCR signaling, and that cellular signals can be temporally and spatially confined. They are also raising controversial issues, such as whether or not receptors and G proteins are pre-coupled and whether G proteins dissociate during activation.
机译:传统上,通过监测下游生理事件或通过基于膜的生化测定来测量G蛋白偶联受体(GPCR)的激活。这些方法均不允许对受体激活和信号传导进行详细的动力学或空间分析。最近,已经开发了几种光学技术来监测受体的激活,方法是使用纯化的重组GPCR或通过观察完整细胞中的GPCR,G蛋白和第二信使。从字面上看,这些技术为信号传递过程的机械基础以及GPCR介导的信号的动力学和空间特性提供了新的观点。他们认为,激动剂可以在几毫秒内激活GPCR,不同的化合物可以诱导GPCR的不同活性构象,G蛋白激活是GPCR信号传导中的限速步骤,并且细胞信号可以在时间和空间上受到限制。他们还提出了有争议的问题,例如受体和G蛋白是否预先偶联以及G蛋白在激活过程中是否解离。

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