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一种有效的单纯疱疹病毒核糖核苷酸还原酶拟肽抑制剂,在体内具有抗病毒活性。

A potent peptidomimetic inhibitor of HSV ribonucleotide reductase with antiviral activity in vivo.

作者信息

Liuzzi M, Déziel R, Moss N, Beaulieu P, Bonneau A M, Bousquet C, Chafouleas J G, Garneau M, Jaramillo J, Krogsrud R L

机构信息

Bio-Méga/Boehringer Ingelheim Research Inc., Laval, Québec, Canada.

出版信息

Nature. 1994 Dec 15;372(6507):695-8. doi: 10.1038/372695a0.

Abstract

Herpes simplex viruses (HSV) types 1 and 2 encode their own ribonucleotide reductases (RNRs) (EC 1.17.4.1) to convert ribonucleoside diphosphates into the corresponding deoxyribonucleotides. Like other iron-dependent RNRs, the viral enzyme is formed by the reversible association of two distinct homodimeric subunits. The carboxy terminus of the RNR small subunit (R2) is critical for subunit association and synthetic peptides containing these amino-acid sequences selectively inhibit the viral enzyme by preventing subunit association. Increasing evidence indicates that the HSV RNR is important for virulence and reactivation from latency. Previously, we reported on the design of HSV RNR inhibitors with enhanced inhibitory potency in vitro. We now report on BILD 1263, which to our knowledge is the first HSV RNR subunit-association inhibitor with antiviral activity in vivo. This compound suppresses the replication of HSV-1, HSV-2 and acyclovir-resistant HSV strains in cell culture, and also strongly potentiates the antiviral activity of acyclovir. Most importantly, its anti-herpetic activity is shown in a murine ocular model of HSV-1-induced keratitis, providing an example of potent nonsubstrate-based antiviral agents that prevent protein-protein interactions. The unique antiviral properties of BILD 1263 may lead to the design of new strategies to treat herpesvirus infections in humans.

摘要

1型和2型单纯疱疹病毒(HSV)编码自身的核糖核苷酸还原酶(RNRs,EC 1.17.4.1),将核糖核苷二磷酸转化为相应的脱氧核糖核苷酸。与其他铁依赖性RNRs一样,病毒酶由两个不同的同型二聚体亚基可逆结合形成。RNR小亚基(R2)的羧基末端对于亚基结合至关重要,含有这些氨基酸序列的合成肽通过阻止亚基结合来选择性抑制病毒酶。越来越多的证据表明,HSV RNR对病毒毒力和从潜伏状态重新激活很重要。此前,我们报道了在体外具有增强抑制效力的HSV RNR抑制剂的设计。我们现在报告BILD 1263,据我们所知,它是第一种在体内具有抗病毒活性的HSV RNR亚基结合抑制剂。该化合物在细胞培养中抑制HSV-1、HSV-2和阿昔洛韦耐药HSV毒株的复制,并且还强烈增强阿昔洛韦的抗病毒活性。最重要的是,其抗疱疹活性在HSV-1诱导的角膜炎小鼠眼部模型中得到体现,提供了一种有效的基于非底物的抗病毒药物防止蛋白质-蛋白质相互作用的实例。BILD 1263独特的抗病毒特性可能会带来治疗人类疱疹病毒感染新策略的设计。

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