Suppr超能文献

丙型肝炎病毒NS3蛋白酶变体的分子模型。

Molecular models of NS3 protease variants of the Hepatitis C virus.

作者信息

da Silveira Nelson J F, Arcuri Helen A, Bonalumi Carlos E, de Souza Fátima P, Mello Isabel M V G C, Rahal Paula, Pinho João R R, de Azevedo Walter F

机构信息

Department of Physics, IBILCE/UNESP, São José do Rio Preto, São Paulo, Brazil.

出版信息

BMC Struct Biol. 2005 Jan 21;5:1. doi: 10.1186/1472-6807-5-1.

Abstract

BACKGROUND

Hepatitis C virus (HCV) currently infects approximately three percent of the world population. In view of the lack of vaccines against HCV, there is an urgent need for an efficient treatment of the disease by an effective antiviral drug. Rational drug design has not been the primary way for discovering major therapeutics. Nevertheless, there are reports of success in the development of inhibitor using a structure-based approach. One of the possible targets for drug development against HCV is the NS3 protease variants. Based on the three-dimensional structure of these variants we expect to identify new NS3 protease inhibitors. In order to speed up the modeling process all NS3 protease variant models were generated in a Beowulf cluster. The potential of the structural bioinformatics for development of new antiviral drugs is discussed.

RESULTS

The atomic coordinates of crystallographic structure 1CU1 and 1DY9 were used as starting model for modeling of the NS3 protease variant structures. The NS3 protease variant structures are composed of six subdomains, which occur in sequence along the polypeptide chain. The protease domain exhibits the dual beta-barrel fold that is common among members of the chymotrypsin serine protease family. The helicase domain contains two structurally related beta-alpha-beta subdomains and a third subdomain of seven helices and three short beta strands. The latter domain is usually referred to as the helicase alpha-helical subdomain. The rmsd value of bond lengths and bond angles, the average G-factor and Verify 3D values are presented for NS3 protease variant structures.

CONCLUSIONS

This project increases the certainty that homology modeling is an useful tool in structural biology and that it can be very valuable in annotating genome sequence information and contributing to structural and functional genomics from virus. The structural models will be used to guide future efforts in the structure-based drug design of a new generation of NS3 protease variants inhibitors. All models in the database are publicly accessible via our interactive website, providing us with large amount of structural models for use in protein-ligand docking analysis.

摘要

背景

丙型肝炎病毒(HCV)目前感染着全球约3%的人口。鉴于缺乏针对HCV的疫苗,迫切需要通过有效的抗病毒药物对该疾病进行有效治疗。合理药物设计并非发现主要治疗药物的主要途径。然而,有报道称采用基于结构的方法开发抑制剂取得了成功。针对HCV进行药物开发的一个可能靶点是NS3蛋白酶变体。基于这些变体的三维结构,我们期望鉴定出新的NS3蛋白酶抑制剂。为了加快建模过程,所有NS3蛋白酶变体模型均在一个Beowulf集群中生成。本文讨论了结构生物信息学在开发新型抗病毒药物方面的潜力。

结果

晶体结构1CU1和1DY9的原子坐标被用作NS3蛋白酶变体结构建模的起始模型。NS3蛋白酶变体结构由六个亚结构域组成,它们沿着多肽链依次出现。蛋白酶结构域呈现出胰凝乳蛋白酶丝氨酸蛋白酶家族成员中常见的双β桶折叠。解旋酶结构域包含两个结构相关的β-α-β亚结构域以及一个由七个螺旋和三条短β链组成的第三个亚结构域。后一个结构域通常被称为解旋酶α-螺旋亚结构域。给出了NS3蛋白酶变体结构的键长和键角的均方根偏差值、平均G因子和Verify 3D值。

结论

该项目增加了同源建模作为结构生物学中一种有用工具的确定性,并且它在注释基因组序列信息以及为病毒的结构和功能基因组学做出贡献方面可能非常有价值。这些结构模型将用于指导未来基于结构的新一代NS3蛋白酶变体抑制剂药物设计的工作。数据库中的所有模型均可通过我们的交互式网站公开获取,为我们提供了大量用于蛋白质-配体对接分析的结构模型。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验