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用于生物报告应用的细菌荧光素酶的最小化化学酶级联反应。

A Minimized Chemoenzymatic Cascade for Bacterial Luciferase in Bioreporter Applications.

机构信息

School of Biomolecular Science and Engineering (BSE), Vidyasirimedhi Institute of Science and Technology (VISTEC), 555 Moo 1, Payupnai, Wangchan, Rayong, 21210, Thailand.

Department of Biochemistry and Center for Excellence in Protein and Enzyme Technology, Faculty of Science, Mahidol University, 272 Rama VI Road, Ratchathewi, Bangkok, 10400, Thailand.

出版信息

Chembiochem. 2020 Jul 16;21(14):2073-2079. doi: 10.1002/cbic.202000100. Epub 2020 Apr 14.

Abstract

Bacterial luciferase (Lux) catalyzes a bioluminescence reaction by using long-chain aldehyde, reduced flavin and molecular oxygen as substrates. The reaction can be applied in reporter gene systems for biomolecular detection in both prokaryotic and eukaryotic organisms. Because reduced flavin is unstable under aerobic conditions, another enzyme, flavin reductase, is needed to supply reduced flavin to the Lux-catalyzed reaction. To create a minimized cascade for Lux that would have greater ease of use, a chemoenzymatic reaction with a biomimetic nicotinamide (BNAH) was used in place of the flavin reductase reaction in the Lux system. The results showed that the minimized cascade reaction can be applied to monitor bioluminescence of the Lux reporter in eukaryotic cells effectively, and that it can achieve higher efficiencies than the system with flavin reductase. This development is useful for future applications as high-throughput detection tools for drug screening applications.

摘要

细菌荧光素酶 (Lux) 以长链醛、还原型黄素和分子氧作为底物催化生物发光反应。该反应可应用于原核和真核生物的生物分子检测的报告基因系统中。由于还原型黄素在有氧条件下不稳定,因此需要另一种酶,黄素还原酶,为 Lux 催化的反应提供还原型黄素。为了创建更易于使用的 Lux 简化级联反应,在 Lux 系统中使用了一种模拟烟酰胺 (BNAH) 的化学酶反应来替代黄素还原酶反应。结果表明,简化级联反应可有效地应用于监测真核细胞中 Lux 报告基因的生物发光,并且其效率高于具有黄素还原酶的系统。这一发展对于未来作为高通量药物筛选应用的检测工具具有重要意义。

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