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利用膜锚定荧光底物检测和细胞内选择性分析全长西尼罗河病毒 NS2B/NS3 丝氨酸蛋白酶。

Detection and in-cell selectivity profiling of the full-length West Nile virus NS2B/NS3 serine protease using membrane-anchored fluorescent substrates.

机构信息

Department of Microbiology and Immunology, Life Sciences Center, the University of British Columbia, Vancouver, Canada.

出版信息

Biol Chem. 2010 May;391(5):549-59. doi: 10.1515/BC.2010.051.

Abstract

Flaviviral NS2B/NS3 heterocomplex serine proteases are a primary target for anti-flavivirus drug discovery. To gain insights into the enzymatic properties and molecular determinants of flaviviral NS2B/NS3 protease substrate specificity in host cells, we developed and applied a novel series of membrane-anchored red-shifted fluorescent protein substrates to detect West Nile virus (WNV) NS2B/NS3 endoproteolytic activity in human cells. The substrate consists of a fluorescent reporter group (DsRed) tethered to the endoplasmic reticulum membrane by a membrane-anchoring domain. Between the two domains is a specific peptide linker that corresponds to the NS2A/NS2B, NS2B/NS3, NS3/NS4A, and NS4B/NS5 protein junctions within the WNV polyprotein precursor. When the protease cleaves the peptide linker, the DsRed reporter group is released, changing its localization in the cell from membrane-bound punctate perinuclear to diffuse cytoplasmic. This change in protein location can be monitored by fluorescent microscopy, and cleavage products can be quantified by Western blotting. Our data demonstrate the robustness of our trans-cleavage fluorescence assay to capture single-cell imaging of membrane-associated WNV NS2B/NS3 endoproteolytic activity and to perform in-cell selectivity profiling of the NS2B/NS3 protease. Our study is the first to provide cellular insights into the biological and enzymatic properties of a prime target for inhibitors of WNV replication.

摘要

黄病毒 NS2B/NS3 异源复合物丝氨酸蛋白酶是抗黄病毒药物发现的主要靶点。为了深入了解黄病毒 NS2B/NS3 蛋白酶在宿主细胞中的酶学特性和分子决定因素,我们开发并应用了一系列新型膜锚定的红移荧光蛋白底物,以检测西尼罗河病毒(WNV)NS2B/NS3 内切蛋白酶活性在人类细胞中。该底物由荧光报告基团(DsRed)通过膜锚定结构域连接到内质网膜上组成。在这两个结构域之间是一个特定的肽接头,对应于 WNV 多蛋白前体中的 NS2A/NS2B、NS2B/NS3、NS3/NS4A 和 NS4B/NS5 蛋白连接。当蛋白酶切割肽接头时,DsRed 报告基团被释放,其在细胞中的定位从膜结合的核周点状变为弥散的细胞质。这种蛋白质位置的变化可以通过荧光显微镜进行监测,并且可以通过 Western blot 对切割产物进行定量。我们的数据证明了我们的跨切割荧光测定法的稳健性,可用于捕获膜相关 WNV NS2B/NS3 内切蛋白酶活性的单细胞成像,并对 NS2B/NS3 蛋白酶进行细胞内选择性分析。我们的研究首次为 WNV 复制抑制剂的主要靶点的生物学和酶学特性提供了细胞内的见解。

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