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通过铰链区工程和优化反应条件实现的基于超灵敏萤火虫荧光素酶的蛋白质-蛋白质相互作用检测(FlimPIA)。

Ultra sensitive firefly luciferase-based protein-protein interaction assay (FlimPIA) attained by hinge region engineering and optimized reaction conditions.

作者信息

Kurihara Makoto, Ohmuro-Matsuyama Yuki, Ayabe Keiichi, Yamashita Takahiro, Yamaji Hideki, Ueda Hiroshi

机构信息

Department of Chemistry and Biotechnology, School of Engineering, The University of Tokyo, Tokyo, Japan.

Chemical Resources Laboratory, Tokyo Institute of Technology, Yokohama, Japan.

出版信息

Biotechnol J. 2016 Jan;11(1):91-9. doi: 10.1002/biot.201500189. Epub 2015 Nov 25.

Abstract

Detecting and assaying protein-protein interactions are significant research procedures in biology and biotechnology. We recently reported a novel assay to detect protein-protein interaction, i.e. firefly luminescent intermediate-based protein-protein interaction assay (FlimPIA) using two mutant firefly luciferases (Flucs), which complement each other's deficient half reaction. This assay detects neighboring of two mutant Flucs, namely, a "Donor" that catalyzes the adenylation of firefly luciferin to produce a luciferyl-adenylate intermediate, and an "Acceptor" that catalyzes the subsequent light emitting reaction. However, its rather high background signal, derived from the remaining adenylation activity of the Acceptor, has limited its usefulness. To reduce this background signal, we introduced a mutation (R437K) into the hinge region of the Acceptor, while maintaining the oxidative activity. Interestingly, the signal/background (S/B) ratio of the assay was markedly improved by the addition of coenzyme A and reduction of the ATP concentration, probably due to reduced inhibition by dehydroluciferyl-adenylate formed during the catalysis and an increased ATP-based Km value of the Acceptor, respectively. As a result, a significantly improved maximal S/B ratio from 2.5 to ∼40 was attained, which promises wider use of the assay in in vitro diagnostics, drug discovery, and expanding our knowledge of various biological phenomena.

摘要

检测和分析蛋白质-蛋白质相互作用是生物学和生物技术领域重要的研究方法。我们最近报道了一种用于检测蛋白质-蛋白质相互作用的新方法,即基于萤火虫发光中间体的蛋白质-蛋白质相互作用检测法(FlimPIA),该方法使用两种相互补充彼此缺陷半反应的突变萤火虫荧光素酶(Flucs)。此方法检测两种突变Flucs的邻近情况,即催化萤火虫荧光素腺苷化以产生荧光素-腺苷酸中间体的“供体”和催化随后发光反应的“受体”。然而,其相当高的背景信号(源自受体剩余的腺苷化活性)限制了它的实用性。为了降低此背景信号,我们在受体的铰链区引入了一个突变(R437K),同时保持氧化活性。有趣的是,通过添加辅酶A和降低ATP浓度,该检测方法的信号/背景(S/B)比显著提高,这可能分别是由于催化过程中形成的脱氢荧光素-腺苷酸的抑制作用降低以及受体基于ATP的Km值增加所致。结果,最大S/B比从2.5显著提高到约40,这有望使该检测方法在体外诊断、药物发现以及扩展我们对各种生物学现象的认识方面得到更广泛的应用。

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