首页> 外文期刊>Journal of receptor and signal transduction research >Label-free optical biosensor for probing integrative role of adenylyl cyclase in G protein-coupled receptor signaling
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Label-free optical biosensor for probing integrative role of adenylyl cyclase in G protein-coupled receptor signaling

机译:用于探测腺苷酸环化酶在G蛋白偶联受体信号传导中的整合作用的无标记光学生物传感器

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摘要

Adenylyl cyclase is considered as an integrator for receptor signaling. However, its integrative role in receptor signaling is largely studied at the level of point of contacts in complex pathways. Here we used forskolin as a pharmacological probe and the resonant waveguide grating (RWG) biosensor to examine the signal integration of G protein-coupled receptors (GPCRs) at the cyclase-cyclic AMP-PKA module. The biosen-sor is a refractive index sensitive optical biosensor that is capable of detecting ligand-induced dynamic mass redistribution in cells without labels and cellular manipulations. Stimulation of seven cell lines with forskolin led to distinct optical responses, indicative of distinct expressions and/or organization of cyclase isoforms. The forskolin response in A431 was sensitive to the activities of protein kinase A, Rho kinase, and MAP kinases. Desensitization assays showed that the forskolin pretreatment heterologously desensitized G_s signaling, partially attenuated Gq signaling, but had complicate impacts on G_q signaling. This study documents the integrative role of adenylyl cyclase in GPCR signaling and the power of forskolin as a pharmacological probe to differentiate receptor signaling using the label-free biosensor cellular assays.
机译:腺苷酸环化酶被认为是受体信号传导的整合剂。但是,它在受体信号传导中的整合作用是在复杂途径中接触点的水平上进行的。在这里,我们使用福斯高林作为药理探针,并使用共振波导光栅(RWG)生物传感器来检查环化酶-环AMP-PKA模块中G蛋白偶联受体(GPCR)的信号整合。生物传感器是折射率敏感的光学生物传感器,能够检测配体诱导的细胞中动态质量重新分布,而无需标记和细胞操作。用毛喉素刺激七个细胞系导致不同的光学反应,表明环化酶同工型的不同表达和/或组织。 A431中的毛喉素反应对蛋白激酶A,Rho激酶和MAP激酶的活性敏感。脱敏测定表明,福司柯林预处理异源地使G_s信号减敏,部分减弱了Gq信号,但对G_q信号的影响复杂。这项研究记录了腺苷酸环化酶在GPCR信号传导中的整合作用,以及福斯科林作为药理学探针使用无标记生物传感器细胞测定法区分受体信号传导的能力。

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