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Dual-color bioluminescence imaging assay using green- and red-emitting beetle luciferases at subcellular resolution

机译:使用绿色和红色发光的甲虫萤光素酶在亚细胞分辨率下进行双色生物发光成像测定

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摘要

Bioluminescence imaging is widely used to monitor cellular events, including gene expression in vivo and in vitro. Moreover, recent advances in luciferase technology have made possible imaging at the single-cell level. To improve the bioluminescence imaging system, we have developed a dual-color imaging system in which the green-emitting luciferase from a Brazilian click beetle (Emerald Luc, ELuc) and the red-emitting luciferase from a railroad worm (Stable Luciferase Red, SLR) were used as reporters, which were localized to the peroxisome and the nucleus, respectively. We clearly captured simultaneously the subcellular localization of ELuc in the peroxisome and SLR in the nucleus of a single cell using a high-magnification objective lens with 3- min exposure time without binning using a combination of optical filters. Furthermore, to apply this system to quantitative time-lapse imaging, the activation of nuclear factor triggered by tumor necrosis factor α was measured using nucleartargeted SLR and peroxisome-targeted ELuc as the test and internal control reporters, respectively. We successfully quantified the kinetics of activation of nuclear factor κB using nuclear-targeted SLR and the transcriptional change of the internal control promoter using peroxisome-targeted ELuc simultaneously in a single cell, and showed that the activation kinetics, including activation rate and amplitude, differed among cells. The results demonstrated that this imaging system can visualize the subcellular localization of reporters and track the expressions of two genes simultaneously at subcellular resolution.
机译:生物发光成像被广泛用于监测细胞事件,包括体内和体外的基因表达。此外,萤光素酶技术的最新进展已使单细胞水平的成像成为可能。为了改善生物发光成像系统,我们已经开发了一种双色成像系统,其中来自巴西点击甲虫的绿色荧光素酶(Emerald Luc,ELuc)和来自铁路蠕虫的红色荧光素酶(稳定的Luciferase Red,SLR) )用作报告基因,分别位于过氧化物酶体和细胞核。我们清楚地捕获了ELuc在过氧化物酶体中的亚细胞定位和单细胞核中的SLR,同时使用了3分钟曝光时间的高倍率物镜,而没有使用滤光片组合进行装箱。此外,为了将该系统应用于定量延时成像,分别使用核靶向的SLR和过氧化物酶体靶向的ELuc作为测试和内部对照报告物,测量了由肿瘤坏死因子α触发的核因子的激活。我们成功地定量了使用核靶向的SLR激活核因子κB的动力学,并使用了以过氧化物酶体靶向的ELuc同时在单个细胞中对内部控制启动子的转录变化进行了定量,结果表明,活化动力学(包括活化速率和幅度)有所不同在细胞之间。结果表明,该成像系统可以可视化报道分子的亚细胞定位,并以亚细胞分辨率同时追踪两个基因的表达。

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