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首页> 外文期刊>Pflügers Archiv European Journal of Physiology >A technique for monitoring multiple signals with a combination of prism-based total internal reflection fluorescence microscopy and epifluorescence microscopy
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A technique for monitoring multiple signals with a combination of prism-based total internal reflection fluorescence microscopy and epifluorescence microscopy

机译:结合基于棱镜的全内反射荧光显微镜和落射荧光显微镜监视多个信号的技术

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摘要

Physiological phenomena are regulated by multiple signal pathways upon receptor stimulation. Here, we have introduced a new technique with a combination of prism-based total internal reflection fluorescence microscopy (PBTIRFM) and epifluorescence microscopy (EPI) to simultaneously monitor multiple signal pathways. This instrumentation allows us to visualize three signal pathways, Ca2+, cyclic adenosine monophosphate (cAMP)/protein kinase A (PKA), and diacylglycerol (DAG)/protein kinase C (PKC) signals in living cells. Three fluorescent indicators were employed for this purpose: (1) Fura-2 AM as a calcium sensor; (2) Epac1-camp, a cyan fluorescent protein–yellow fluorescent protein fluorescence resonance energy transfer-based cAMP indicator, as a cAMP sensor; and (3) C1-tagged monomeric red fluorescent protein, a tandem DAG-binding domain of PKC γ, as a DAG sensor or myristoylated alanine-rich C kinase substrate-tagged DsRed for the PKC activation pathway. The DAG signal was monitored by PBTIRFM, whereas the Ca2+ and cAMP signals were monitored by EPI. Adenosine trisphosphate resulted in generation of all three second messengers in triple probe-loaded Cos-7 cells. The spectral overlap between these signal probes was evaluated by means of linear unmixing. Forskolin also evoked Ca2+, cAMP/PKA, and DAG/PKC signals whereas acetylcholine activated Ca2+ and DAG/PKC signals as well as inhibiting cAMP generation in triple probe-loaded insulin-secreting cells. Thus, the optical observation system combining PBTIRFM and EPI offers a great advance in analyzing interplay of multiple signaling pathways, such as these second messengers, upon G-protein-coupled receptor stimulation in living cells. Keywords Prism-based total internal reflection fluorescence microscopy - Linear unmixing - G-protein-coupled receptor - Second messenger - Live cell imaging
机译:受体刺激后,生理现象受到多种信号通路的调节。在这里,我们介绍了一种新技术,结合了基于棱镜的全内反射荧光显微镜(PBTIRFM)和落射荧光显微镜(EPI)来同时监视多个信号路径。该仪器使我们能够可视化生活中的三个信号途径,Ca 2 + ,单磷酸环腺苷(cAMP)/蛋白激酶A(PKA)和二酰基甘油(DAG)/蛋白激酶C(PKC)信号细胞。为此使用了三种荧光指示剂:(1)Fura-2 AM作为钙传感器; (2)Epac1-camp,一种基于青色荧光蛋白-黄色荧光蛋白荧光共振能量转移的cAMP指示剂,作为cAMP传感器; (3)C1标记的单体红色荧光蛋白(PKCγ的串联DAG结合域),作为PKC激活途径的DAG传感器或富含甲酰化的富含丙氨酸的C激酶底物标记的DsRed。 DAG信号通过PBTIRFM监测,而Ca 2 + 和cAMP信号通过EPI监测。三磷酸腺苷导致三探针加载的Cos-7细胞中所有三个第二信使的生成。这些信号探针之间的光谱重叠通过线性分解来评估。福斯高林还诱发Ca 2 + ,cAMP / PKA和DAG / PKC信号,而乙酰胆碱激活Ca 2 + 和DAG / PKC信号并抑制三探针中cAMP的产生载胰岛素分泌细胞。因此,结合了PBTIRFM和EPI的光学观察系统在分析活细胞中G蛋白偶联受体刺激的多种信号传导途径(例如这些第二信使)之间的相互作用方面提供了巨大的进步。关键词基于棱镜的全内反射荧光显微镜-线性分解-G蛋白偶联受体-第二信使-活细胞成像

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