Research School of Chemistry, Australian National University, Canberra, Australia.
FEBS J. 2014 Mar;281(6):1517-33. doi: 10.1111/febs.12729. Epub 2014 Feb 12.
The two-component dengue virus NS2B-NS3 protease (NS2B-NS3pro) is an established drug target but inhibitor design is hampered by uncertainties about its 3D structure in solution. Crystal structures reported very different conformations for the functionally important C-terminal segment of the NS2B cofactor (NS2Bc), indicating open and closed conformations in the absence and presence of inhibitors, respectively. An earlier NMR study in solution indicated that a closed state is the preferred conformation in the absence of an artificial linker engineered between NS2B and NS3pro. To obtain direct structural information on the fold of unlinked NS2B-NS3pro in solution, we tagged NS3pro with paramagnetic tags and measured pseudocontact shifts by NMR to position NS2Bc relative to NS3pro. NS2Bc was found to bind to NS3pro in the same way as reported in a previously published model and crystal structure of the closed state. The structure is destabilized, however, by high ionic strength and basic pH, showing the importance of electrostatic forces to tie NS2Bc to NS3pro. Narrow NMR signals previously thought to represent the open state are associated with protein degradation. In conclusion, the closed conformation of the NS2B-NS3 protease is the best model for structure-guided drug design.
二组分登革热病毒 NS2B-NS3 蛋白酶(NS2B-NS3pro)是一个既定的药物靶点,但抑制剂的设计受到其在溶液中三维结构不确定性的阻碍。报道的晶体结构对功能重要的 NS2B 辅助因子(NS2Bc)的 C 末端片段表现出非常不同的构象,分别表示在没有和存在抑制剂的情况下的开放和封闭构象。早期的溶液 NMR 研究表明,在没有在 NS2B 和 NS3pro 之间设计人工接头的情况下,封闭状态是首选构象。为了获得溶液中未连接的 NS2B-NS3pro 折叠的直接结构信息,我们用顺磁标记物标记 NS3pro,并通过 NMR 测量赝接触位移来确定 NS2Bc 相对于 NS3pro 的位置。结果表明,NS2Bc 以与先前发表的封闭状态模型和晶体结构中报道的相同方式结合到 NS3pro 上。然而,该结构在高离子强度和碱性 pH 下不稳定,表明静电相互作用对于将 NS2Bc 与 NS3pro 结合的重要性。先前认为代表开放状态的较窄 NMR 信号与蛋白质降解有关。总之,NS2B-NS3 蛋白酶的封闭构象是基于结构的药物设计的最佳模型。