Ishii K, Tanaka Y, Yap C C, Aizaki H, Matsuura Y, Miyamura T
Department of Virology II, National Institute of Infectious Diseases (Former National Institute of Health), Tokyo, Japan.
Hepatology. 1999 Apr;29(4):1227-35. doi: 10.1002/hep.510290448.
The nonstructural protein 5B (NS5B) of hepatitis C virus (HCV) is considered to possess RNA-dependent RNA polymerase (RdRp) activity and to play an essential role for the viral replication. In this study, we expressed the NS5B protein of 65 kd by a recombinant baculovirus. With the highly purified NS5B protein, we established an in vitro system for RdRp activity by using poly(A) as a template and a 15-mer oligo(U) (oligo(U)15) as a primer. Optimal conditions of temperature and pH for primer-dependent polymerase activity of the NS5B were 32 degrees C and pH 8.0. The addition of 10 mmol of Mg2+ increased the activity. The importance of three motifs conserved in RdRp among other positive-strand RNA viruses was confirmed by introduction of an Ala residue to every amino acid of the motifs by site-directed mutagenesis. All mutants lost RdRp activity, but retained the RNA binding activity, except one mutant at Thr287/Asn291. Deletion mutant analysis indicated that the N-terminal region of NS5B protein was critical for the RNA binding. Inhibition of RdRp activity by (-)beta-L-2', 3'-dideoxy-3'-thiacytidine 5'-triphosphate (3TC; lamivudine triphosphate) and phosphonoacetic acid (PAA) was observed after screening of nucleoside analogs and known polymerase inhibitors. These data provide us not only important clues for understanding the mechanism of HCV replication, but also a new target of antiviral therapy.
丙型肝炎病毒(HCV)的非结构蛋白5B(NS5B)被认为具有RNA依赖性RNA聚合酶(RdRp)活性,并且在病毒复制中起关键作用。在本研究中,我们通过重组杆状病毒表达了65kd的NS5B蛋白。利用高度纯化的NS5B蛋白,我们以聚(A)为模板、15聚体寡聚尿苷(oligo(U)15)为引物建立了RdRp活性的体外系统。NS5B引物依赖性聚合酶活性的最佳温度和pH条件分别为32℃和pH 8.0。添加10mmol的Mg2+可提高活性。通过定点诱变将丙氨酸残基引入其他正链RNA病毒中RdRp保守的三个基序的每个氨基酸,证实了这些基序的重要性。除了Thr287/Asn291处的一个突变体外,所有突变体均丧失了RdRp活性,但保留了RNA结合活性。缺失突变体分析表明,NS5B蛋白的N端区域对RNA结合至关重要。在筛选核苷类似物和已知的聚合酶抑制剂后,观察到(-)β-L-2',3'-二脱氧-3'-硫代胞苷5'-三磷酸(3TC;拉米夫定三磷酸)和膦甲酸(PAA)对RdRp活性的抑制作用。这些数据不仅为我们理解HCV复制机制提供了重要线索,也为抗病毒治疗提供了新的靶点。