Sali D L, Ingram R, Wendel M, Gupta D, McNemar C, Tsarbopoulos A, Chen J W, Hong Z, Chase R, Risano C, Zhang R, Yao N, Kwong A D, Ramanathan L, Le H V, Weber P C
Department of Structural Chemistry, Schering-Plough Research Institute, Kenilworth, New Jersey 07033, USA.
Biochemistry. 1998 Mar 10;37(10):3392-401. doi: 10.1021/bi972010r.
Hepatitis C virus (HCV) protease NS3 and its protein activator NS4A participate in the processing of the viral polyprotein into its constituent nonstructural proteins. The NS3/4A complex is thus an attractive target for antiviral therapy against HCV. We expressed the full-length NS3 and NS4A in insect cells as a soluble fusion protein with an N-terminal polyhistidine tag and purified the two proteins to homogeneity. Cleavage at the junction between HisNS3 and NS4A occurs during expression, producing a noncovalent complex between HisNS3 and NS4A with a subnanomolar dissociation constant. We purified the HisNS3/4A complex by detergent extraction of cell lysate and by metal chelate chromatography. We removed the His tag by thrombin cleavage and then further purified the complex by gel filtration. The purified NS3/4A complex is active in a protease assay using a synthetic peptide substrate derived from the NS5A-NS5B junction, with kcat/K(m) of 3700 (+/- 600) M-1 s-1, an order of magnitude above those previously reported for NS3 expressed by other strategies. This high protease activity implies that the full-length sequences of NS3 and NS4A are required for optimal activity of the NS3 protease domain. We examined the dependence of the NS3/4A protease activity on buffer conditions, temperature, and the presence of detergents. We find that, under most conditions, NS3 protease activity is dependent on the aggregation state of the NS3/4A complex. The monodisperse, soluble form of the NS3/4A complex is associated with the highest protease activity.
丙型肝炎病毒(HCV)蛋白酶NS3及其蛋白激活剂NS4A参与病毒多聚蛋白加工成其组成性非结构蛋白的过程。因此,NS3/4A复合物是抗HCV抗病毒治疗的一个有吸引力的靶点。我们在昆虫细胞中表达了全长NS3和NS4A,作为带有N端多组氨酸标签的可溶性融合蛋白,并将这两种蛋白纯化至均一。在HisNS3和NS4A之间的连接处切割发生在表达过程中,产生了HisNS3和NS4A之间的非共价复合物,其解离常数为亚纳摩尔级。我们通过去污剂提取细胞裂解物并通过金属螯合层析纯化了HisNS3/4A复合物。我们通过凝血酶切割去除His标签,然后通过凝胶过滤进一步纯化复合物。纯化的NS3/4A复合物在使用源自NS5A-NS5B连接处的合成肽底物的蛋白酶测定中具有活性,kcat/K(m)为3700(±600)M-1 s-1,比先前报道的通过其他策略表达的NS3高一个数量级。这种高蛋白酶活性意味着NS3蛋白酶结构域的最佳活性需要NS3和NS4A的全长序列。我们研究了NS3/4A蛋白酶活性对缓冲液条件、温度和去污剂存在的依赖性。我们发现,在大多数条件下,NS3蛋白酶活性取决于NS3/4A复合物的聚集状态。NS3/4A复合物的单分散、可溶形式与最高的蛋白酶活性相关。