Zhou Hong, Singh N Jiten, Kim Kwang S
Department of Chemistry, Division of Molecular and Life Sciences, Pohang University of Science and Technology, Hyojadong, Namgu, Pohang 790-784, Korea.
Proteins. 2006 Nov 15;65(3):692-701. doi: 10.1002/prot.21129.
The West Nile virus (WNV) NS3 serine protease, which plays an important role in assembly of infective virion, is an attractive target for anti-WNV drug development. Cofactors NS2B and NS4A increase the catalytic activity of NS3 in dengue virus and Hepatitis C virus, respectively. Recent studies on the WNV-NS3 characterize the catalytically active form of NS3 by tethering the 40-residue cofactor NS2B. It is suggested that NS2B is essential for the NS3 activity in WNV, while there is no information of the WNV-NS3-related crystal structure. To understand the role of NS2B/substrate in the NS3 catalytic activity, we built a series of models: WNV-NS3 and WNV-NS3-NS2B and WNV-NS3-NS2B-substrate using homology modeling and molecular modeling techniques. Molecular dynamics (MD) simulations were performed for 2.75 ns on each model, to investigate the structural stabilization and catalytic triad motion of the WNV NS3 protease with and without NS2B/substrate. The simulations show that the NS3 rearrangement occurs upon the NS2B binding, resulting in the stable D75-OD1...H51-NH hydrogen bonding. After the substrate binds to the NS3-NS2B active site, the NS3 protease becomes more stable, and the catalytic triad is formed. These results provide a structural basis for the activation and stabilization of the enzyme by its cofactor and substrate.
西尼罗河病毒(WNV)NS3丝氨酸蛋白酶在感染性病毒粒子的组装中起重要作用,是抗WNV药物开发的一个有吸引力的靶点。辅助因子NS2B和NS4A分别增加登革热病毒和丙型肝炎病毒中NS3的催化活性。最近关于WNV-NS3的研究通过连接40个残基的辅助因子NS2B来表征NS3的催化活性形式。有人提出NS2B对WNV中NS3的活性至关重要,而目前尚无WNV-NS3相关晶体结构的信息。为了了解NS2B/底物在NS3催化活性中的作用,我们使用同源建模和分子建模技术构建了一系列模型:WNV-NS3、WNV-NS3-NS2B和WNV-NS3-NS2B-底物。对每个模型进行了2.75纳秒的分子动力学(MD)模拟,以研究有无NS2B/底物时WNV NS3蛋白酶的结构稳定性和催化三联体运动。模拟结果表明,NS2B结合后NS3发生重排,形成稳定的D75-OD1...H51-NH氢键。底物与NS3-NS2B活性位点结合后,NS3蛋白酶变得更加稳定,并形成催化三联体。这些结果为该酶被其辅助因子和底物激活及稳定提供了结构基础。