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西尼罗河病毒NS3加工蛋白酶的切割靶点及基于D-精氨酸的抑制剂

Cleavage targets and the D-arginine-based inhibitors of the West Nile virus NS3 processing proteinase.

作者信息

Shiryaev Sergey A, Ratnikov Boris I, Chekanov Alexei V, Sikora Sergey, Rozanov Dmitri V, Godzik Adam, Wang Jun, Smith Jeffrey W, Huang Ziwei, Lindberg Iris, Samuel Melanie A, Diamond Michael S, Strongin Alex Y

机构信息

The Burnham Institute, La Jolla, CA 92037, USA.

出版信息

Biochem J. 2006 Jan 15;393(Pt 2):503-11. doi: 10.1042/BJ20051374.

Abstract

Mosquito-borne WNV (West Nile virus) is an emerging global threat. The NS3 proteinase, which is essential for the proteolytic processing of the viral polyprotein precursor, is a promising drug target. We have isolated and biochemically characterized the recombinant, highly active NS3 proteinase. We have determined that the NS3 proteinase functions in a manner that is distantly similar to furin in cleaving the peptide and protein substrates. We determined that aprotinin and D-arginine-based 9-12-mer peptides are potent inhibitors of WNV NS3 with K(i) values of 26 nM and 1 nM respectively. Consistent with the essential role of NS3 activity in the life cycle of WNV and with the sensitivity of NS3 activity to the D-arginine-based peptides, we showed that nona-D-Arg-NH2 reduced WNV infection in primary neurons. We have also shown that myelin basic protein, a deficiency of which is linked to neurological abnormalities of the brain, is sensitive to NS3 proteolysis in vitro and therefore this protein represents a convenient test substrate for the studies of NS3. A three-dimensional model of WNV NS3 that we created may provide a structural guidance and a rationale for the subsequent design of fine-tuned inhibitors. Overall, our findings represent a foundation for in-depth mechanistic and structural studies as well as for the design of novel and efficient inhibitors of WNV NS3.

摘要

蚊媒传播的西尼罗河病毒(WNV)是一种新出现的全球威胁。NS3蛋白酶对于病毒多蛋白前体的蛋白水解加工至关重要,是一个有前景的药物靶点。我们已经分离并对重组的、高活性的NS3蛋白酶进行了生化特性鉴定。我们确定NS3蛋白酶在切割肽和蛋白质底物时的作用方式与弗林蛋白酶有一定相似性。我们还确定抑肽酶和基于D-精氨酸的9-12聚体肽是WNV NS3的有效抑制剂,其抑制常数(K(i))值分别为26 nM和1 nM。鉴于NS3活性在WNV生命周期中的重要作用以及NS3活性对基于D-精氨酸肽的敏感性,我们证明了九聚-D-精氨酸-NH2可降低原代神经元中的WNV感染。我们还表明,髓鞘碱性蛋白(其缺乏与脑部神经异常有关)在体外对NS3蛋白水解敏感,因此该蛋白是研究NS3的便利测试底物。我们构建的WNV NS3三维模型可为后续设计微调抑制剂提供结构指导和理论依据。总体而言,我们的研究结果为深入的机制和结构研究以及设计新型高效的WNV NS3抑制剂奠定了基础。

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