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环磷酸腺苷(cAMP)依赖性蛋白激酶抑制剂H - 89可减弱海肾荧光素酶产生的生物发光信号。

The cAMP-dependent protein kinase inhibitor H-89 attenuates the bioluminescence signal produced by Renilla Luciferase.

作者信息

Herbst Katie J, Allen Michael D, Zhang Jin

机构信息

Department of Pharmacology and Molecular Sciences, The Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.

出版信息

PLoS One. 2009 May 21;4(5):e5642. doi: 10.1371/journal.pone.0005642.

Abstract

BACKGROUND

Investigations into the regulation and functional roles of kinases such as cAMP-dependent protein kinase (PKA) increasingly rely on cellular assays. Currently, there are a number of bioluminescence-based assays, for example reporter gene assays, that allow the study of the regulation, activity, and functional effects of PKA in the cellular context. Additionally there are continuing efforts to engineer improved biosensors that are capable of detecting real-time PKA signaling dynamics in cells. These cell-based assays are often utilized to test the involvement of PKA-dependent processes by using H-89, a reversible competitive inhibitor of PKA.

PRINCIPAL FINDINGS

We present here data to show that H-89, in addition to being a competitive PKA inhibitor, attenuates the bioluminescence signal produced by Renilla luciferase (RLuc) variants in a population of cells and also in single cells. Using 10 microM of luciferase substrate and 10 microM H-89, we observed that the signal from RLuc and RLuc8, an eight-point mutation variant of RLuc, in cells was reduced to 50% (+/-15%) and 54% (+/-14%) of controls exposed to the vehicle alone, respectively. In vitro, we showed that H-89 decreased the RLuc8 bioluminescence signal but did not compete with coelenterazine-h for the RLuc8 active site, and also did not affect the activity of Firefly luciferase. By contrast, another competitive inhibitor of PKA, KT5720, did not affect the activity of RLuc8.

SIGNIFICANCE

The identification and characterization of the adverse effect of H-89 on RLuc signal will help deconvolute data previously generated from RLuc-based assays looking at the functional effects of PKA signaling. In addition, for the current application and future development of bioluminscence assays, KT5720 is identified as a more suitable PKA inhibitor to be used in conjunction with RLuc-based assays. These principal findings also provide an important lesson to fully consider all of the potential effects of experimental conditions on a cell-based assay readout before drawing conclusions from the data.

摘要

背景

对诸如环磷酸腺苷依赖性蛋白激酶(PKA)等激酶的调控及功能作用的研究越来越依赖细胞分析方法。目前,有许多基于生物发光的分析方法,例如报告基因分析,可用于在细胞环境中研究PKA的调控、活性及功能效应。此外,人们还在不断努力设计出能够检测细胞中PKA信号实时动态变化的改良生物传感器。这些基于细胞的分析方法常通过使用PKA的可逆竞争性抑制剂H-89来测试PKA依赖性过程的参与情况。

主要发现

我们在此展示的数据表明,H-89除了是一种竞争性PKA抑制剂外,还会减弱细胞群体及单个细胞中由海肾荧光素酶(RLuc)变体产生的生物发光信号。使用10微摩尔的荧光素酶底物和10微摩尔的H-89,我们观察到细胞中RLuc和RLuc8(RLuc的一种八点突变变体)的信号分别降至仅暴露于溶剂的对照组信号的50%(±15%)和54%(±14%)。在体外,我们表明H-89降低了RLuc8的生物发光信号,但不与腔肠素-h竞争RLuc8的活性位点,也不影响萤火虫荧光素酶的活性。相比之下,另一种PKA竞争性抑制剂KT5720不影响RLuc8的活性。

意义

H-89对RLuc信号的不利影响的鉴定和表征将有助于解析先前从基于RLuc的分析中获得的有关PKA信号功能效应的数据。此外,对于生物发光分析的当前应用和未来发展,KT5720被确定为更适合与基于RLuc的分析联合使用的PKA抑制剂。这些主要发现还提供了一个重要教训,即在从数据得出结论之前,要充分考虑实验条件对基于细胞的分析读数的所有潜在影响。

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