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三部分 NanoLuc 作为一种新的分裂技术,具有在化学生物学中的潜在应用:一篇综述。

Tri-part NanoLuc as a new split technology with potential applications in chemical biology: a mini-review.

机构信息

Department of Cell and Molecular Biology and Microbiology, Faculty of Biological Science and Technology, University of Isfahan, Isfahan, Iran.

Department of Biochemistry and Medical Genetics, Max Rady College of Medicine, Rady Faculty of Health Sciences, University of Manitoba, Winnipeg, MB R3E 0J9, Canada.

出版信息

Anal Methods. 2023 Aug 17;15(32):3924-3931. doi: 10.1039/d3ay00512g.

Abstract

For several decades, researchers have been using protein-fragment complementation assay (PCA) approaches for biosensing to study protein-protein interaction for a variety of aims, including viral infection, cellular apoptosis, G protein coupled receptor (GPCR) signaling, drug and substrate screening, and protein aggregation and protein editing by CRISPR/Cas9. As a reporter, NanoLuc (NLuc), a smaller and the brightest engineered luciferase derived from deep-sea shrimp , has been found to have many benefits over other luminescent enzymes in PCA. Inspired by the split green fluorescent protein (GFP) and its β-barrel structure, two split NLuc consisting of peptide fragments have been reported including the binary and ternary NLuc systems. NanoBiT® (large fragment + peptide) has been used extensively. In contrast, tripart split NLuc (large fragment + 2 peptides) has been applied and hardly used, while it has some advantages over NanoBiT in some studies. Nevertheless, tripart NLuc has some drawbacks and challenges to overcome but has several potential characteristics to become a multifunctional and powerful tool. In this review, several aspects of tripart NLuc are studied and a brief comparison with NanoBiT® is given.

摘要

几十年来,研究人员一直在使用蛋白片段互补分析(PCA)方法进行生物传感,以研究蛋白质-蛋白质相互作用,其目的多种多样,包括病毒感染、细胞凋亡、G 蛋白偶联受体(GPCR)信号、药物和底物筛选,以及 CRISPR/Cas9 的蛋白质聚集和蛋白质编辑。作为报告蛋白,源于深海虾的更小和更亮的工程化荧光素酶 NanoLuc(NLuc)被发现比 PCA 中的其他发光酶具有许多优势。受分裂绿色荧光蛋白(GFP)及其β桶结构的启发,已经报道了两种由肽片段组成的分裂 NLuc,包括二元和三元 NLuc 系统。NanoBiT®(大片段+肽)被广泛使用。相比之下,三分体分裂 NLuc(大片段+2 个肽)已被应用但很少使用,尽管在某些研究中它比 NanoBiT 具有一些优势。然而,三分体 NLuc 存在一些缺点和挑战需要克服,但具有一些潜在的特性,可以成为一种多功能且强大的工具。在这篇综述中,研究了三分体 NLuc 的几个方面,并与 NanoBiT®进行了简要比较。

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