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多重六重萤光素酶检测。

Multiplex Hextuple Luciferase Assaying.

机构信息

Verna and Marrs McLean Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, TX, USA.

Department of Pharmacology and Chemical Biology, Baylor College of Medicine, Houston, TX, USA.

出版信息

Methods Mol Biol. 2022;2524:433-456. doi: 10.1007/978-1-0716-2453-1_33.

Abstract

We recently expanded the commonly used dual luciferase assaying method toward multiplex hextuple luciferase assaying, allowing monitoring the activity of five experimental pathways against one control at the same time. In doing so, while our expanded assay utilizes a total of six orthogonal luciferases instead of two, this assay, conveniently, still utilizes the well-established reagents and principles of the widely used dual luciferase assay. Three quenchable D-luciferin-consuming luciferases are measured after addition of D-Luciferin substrate, followed by quenching of their bioluminescence (BL) and the measurement of three coelenterazine (CTZ)-consuming luciferases after addition of CTZ substrate, all in the same vessel. Here, we provide detailed protocols on how to perform such multiplex hextuple luciferase assaying to monitor cellular signal processing upstream of five transcription factors and their corresponding transcription factor-binding motifs, using a constitutive promoter as normalization control. The first protocol is provided on how to perform cell culture in preparation toward genetic or pharmaceutical perturbations, as well as transfecting a multiplex hextuple luciferase reporter vector encoding all luciferase reporter units needed for multiplex hextuple luciferase assaying. The second protocol details on how to execute multiplex hextuple luciferase assaying using a microplate reader appropriately equipped to detect the different BLs emitted by all six luciferases. Finally, the third protocol provides details on analyzing, plotting, and interpreting the data obtained by the microplate reader.

摘要

我们最近将常用的双荧光素酶检测方法扩展到了六重荧光素酶检测方法,允许同时监测五个实验途径相对于一个对照的活性。在这样做的过程中,虽然我们的扩展检测总共使用了六种正交荧光素酶而不是两种,但该检测方法方便地仍然利用了广泛使用的双荧光素酶检测中成熟的试剂和原理。在添加 D-荧光素底物后,测量三种可淬灭的 D-荧光素消耗型荧光素酶,然后在添加 CTZ 底物后淬灭它们的生物发光 (BL),并测量三种腔肠素 (CTZ) 消耗型荧光素酶,所有这些都在同一个容器中进行。在这里,我们提供了详细的协议,说明如何进行这种六重荧光素酶检测,以监测五个转录因子及其相应的转录因子结合基序上游的细胞信号处理,使用组成型启动子作为归一化对照。第一个方案提供了如何进行细胞培养,为遗传或药物干扰做好准备,以及转染编码用于六重荧光素酶检测所需的所有荧光素酶报告单位的六重荧光素酶报告载体。第二个方案详细说明了如何使用适当配备以检测所有六种荧光素酶发出的不同 BL 的微孔板读取器来执行六重荧光素酶检测。最后,第三个方案提供了有关如何分析、绘制和解释微孔板读取器获得的数据的详细信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3982/10157609/c8d2b266db6a/nihms-1891930-f0001.jpg

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