Azad Taha, Janse van Rensburg Helena J, Morgan Jessica, Rezaei Reza, Crupi Mathieu J F, Chen Rui, Ghahremani Mina, Jamalkhah Monire, Forbes Nicole, Ilkow Carolina, Bell John C
Centre for Innovative Cancer Research, Ottawa Hospital Research Institute, Ottawa K1H 8L6, Canada.
Department of Biochemistry, Microbiology and Immunology, University of Ottawa, Ottawa K1H 8M5, Canada.
ACS Nanosci Au. 2021 Aug 9;1(1):15-37. doi: 10.1021/acsnanoscienceau.1c00009. eCollection 2021 Dec 15.
Luciferase-based biosensors have a wide range of applications and assay formats, including their relatively recent use in the study of viruses. Split luciferase, bioluminescence resonance energy transfer, circularly permuted luciferase, cyclic luciferase, and dual luciferase systems have all been used to interrogate the structure and function of prominent viruses infecting humans, animals, and plants. The utility of these assays is demonstrated by numerous studies which have not only successfully characterized interactions between viral and host cell proteins but that have also used these systems to identify viral inhibitors. In the present COVID-19 pandemic, luciferase-based biosensors are already playing a critical role in the study of the culprit virus SARS-CoV-2 as well as in the development of serological assays and drug development via high-throughput screening. In this review paper, we provide a summary of existing luciferase-based biosensors and their applications in virology.
基于荧光素酶的生物传感器具有广泛的应用和检测形式,包括它们最近在病毒研究中的应用。分裂荧光素酶、生物发光共振能量转移、环状排列荧光素酶、循环荧光素酶和双荧光素酶系统都已用于研究感染人类、动物和植物的重要病毒的结构和功能。许多研究证明了这些检测方法的实用性,这些研究不仅成功地表征了病毒与宿主细胞蛋白之间的相互作用,还利用这些系统鉴定了病毒抑制剂。在当前的新冠疫情中,基于荧光素酶的生物传感器已经在对致病病毒SARS-CoV-2的研究以及通过高通量筛选进行血清学检测和药物开发中发挥着关键作用。在这篇综述文章中,我们总结了现有的基于荧光素酶的生物传感器及其在病毒学中的应用。