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利用荧光底物对严重急性呼吸综合征主要蛋白酶进行表征及抑制剂检测

Characterization of SARS main protease and inhibitor assay using a fluorogenic substrate.

作者信息

Kuo Chih-Jung, Chi Ya-Hui, Hsu John T-A, Liang Po-Huang

机构信息

Institute of Biological Chemistry, Academia Sinica, Taipei 115, Taiwan, ROC.

出版信息

Biochem Biophys Res Commun. 2004 Jun 11;318(4):862-7. doi: 10.1016/j.bbrc.2004.04.098.

Abstract

SARS main protease is essential for life cycle of SARS coronavirus and may be a key target for developing anti-SARS drugs. Recently, the enzyme expressed in Escherichia coli was characterized using a HPLC assay to monitor the formation of products from 11 peptide substrates covering the cleavage sites found in the SARS viral genome. This protease easily dissociated into inactive monomer and the deduced Kd of the dimer was 100 microM. In order to detect enzyme activity, the assay needed to be performed at micromolar enzyme concentration. This makes finding the tight inhibitor (nanomolar range IC50) impossible. In this study, we prepared a peptide with fluorescence quenching pair (Dabcyl and Edans) at both ends of a peptide substrate and used this fluorogenic peptide substrate to characterize SARS main protease and screen inhibitors. The fluorogenic peptide gave extremely sensitive signal upon cleavage catalyzed by the protease. Using this substrate, the protease exhibits a significantly higher activity (kcat = 1.9 s(-1) and Km = 17 microM) compared to the previously reported parameters. Under our assay condition, the enzyme stays as an active dimer without dissociating into monomer and reveals a small Kd value (15 nM). This enzyme in conjunction with fluorogenic peptide substrate provides us a suitable tool for identifying potent inhibitors of SARS protease.

摘要

SARS主要蛋白酶对于SARS冠状病毒的生命周期至关重要,可能是开发抗SARS药物的关键靶点。最近,利用高效液相色谱法(HPLC)检测法对在大肠杆菌中表达的该酶进行了表征,以监测来自11种肽底物的产物形成情况,这些底物覆盖了SARS病毒基因组中发现的切割位点。这种蛋白酶很容易解离成无活性的单体,推测其二聚体的解离常数(Kd)为100微摩尔。为了检测酶活性,检测需要在微摩尔浓度的酶下进行。这使得找到紧密抑制剂(IC50在纳摩尔范围内)变得不可能。在本研究中,我们制备了一种在肽底物两端带有荧光猝灭对(Dabcyl和Edans)的肽,并使用这种荧光肽底物来表征SARS主要蛋白酶并筛选抑制剂。该荧光肽在蛋白酶催化切割时产生极其灵敏的信号。使用这种底物,与先前报道的参数相比,该蛋白酶表现出显著更高的活性(催化常数kcat = 1.9 s(-1),米氏常数Km = 17微摩尔)。在我们的检测条件下,该酶保持为活性二聚体,不会解离成单体,并且显示出较小的解离常数(15纳摩尔)。这种酶与荧光肽底物相结合,为我们提供了一种鉴定SARS蛋白酶强效抑制剂的合适工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/665d/7134607/3c50b4109539/gr1.jpg

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