Su Xun-Cheng, Ozawa Kiyoshi, Yagi Hiromasa, Lim Siew P, Wen Daying, Ekonomiuk Dariusz, Huang Danzhi, Keller Thomas H, Sonntag Sebastian, Caflisch Amedeo, Vasudevan Subhash G, Otting Gottfried
Research School of Chemistry, Australian National University, Canberra, Australia.
FEBS J. 2009 Aug;276(15):4244-55. doi: 10.1111/j.1742-4658.2009.07132.x. Epub 2009 Jul 3.
The two-component NS2B-NS3 protease of West Nile virus is essential for its replication and presents an attractive target for drug development. Here, we describe protocols for the high-yield expression of stable isotope-labelled samples in vivo and in vitro. We also describe the use of NMR spectroscopy to determine the binding mode of new low molecular mass inhibitors of the West Nile virus NS2B-NS3 protease which were discovered using high-throughput in vitro screening. Binding to the substrate-binding sites S1 and S3 is confirmed by intermolecular NOEs and comparison with the binding mode of a previously identified low molecular mass inhibitor. Our results show that all these inhibitors act by occupying the substrate-binding site of the protease rather than by an allosteric mechanism. In addition, the NS2B polypeptide chain was found to be positioned near the substrate-binding site, as observed previously in crystal structures of the protease in complex with peptide inhibitors or bovine pancreatic trypsin inhibitor. This indicates that the new low molecular mass compounds, although inhibiting the protease, also promote the proteolytically active conformation of NS2B, which is very different from the crystal structure of the protein without inhibitor.
西尼罗河病毒的双组分NS2B-NS3蛋白酶对其复制至关重要,是药物开发的一个有吸引力的靶点。在此,我们描述了在体内和体外高产表达稳定同位素标记样品的方案。我们还描述了使用核磁共振光谱来确定通过高通量体外筛选发现的西尼罗河病毒NS2B-NS3蛋白酶新的低分子量抑制剂的结合模式。通过分子间核Overhauser效应(NOE)以及与先前鉴定的低分子量抑制剂的结合模式进行比较,证实了与底物结合位点S1和S3的结合。我们的结果表明,所有这些抑制剂都是通过占据蛋白酶的底物结合位点起作用,而不是通过变构机制。此外,正如先前在蛋白酶与肽抑制剂或牛胰蛋白酶抑制剂复合物的晶体结构中所观察到的那样,发现NS2B多肽链位于底物结合位点附近。这表明新的低分子量化合物虽然抑制蛋白酶,但也促进了NS2B的蛋白水解活性构象,这与没有抑制剂时该蛋白的晶体结构有很大不同。