Stempniak M, Hostomska Z, Nodes B R, Hostomsky Z
Agouron Pharmaceuticals, Inc., San Diego, California 92121, USA.
J Virol. 1997 Apr;71(4):2881-6. doi: 10.1128/JVI.71.4.2881-2886.1997.
NS3 proteinase of hepatitis C virus (HCV), contained within the N-terminal domain of the NS3 protein, is a chymotrypsin-like serine proteinase responsible for processing of the nonstructural region of the HCV polyprotein. In this study, we examined the sensitivity of the NS3 proteinase to divalent metal ions, which is unusual behavior for this proteinase class. By using a cell-free coupled transcription-translation system, we found that HCV polyprotein processing can be activated by Zn2+ (and, to a lesser degree, by Cd2+, Pb2+, and Co2+) and inhibited by Cu2+ and Hg2+ ions. Elemental analysis of the purified NS3 proteinase domain revealed the presence of zinc in an equimolar ratio. The zinc content was unchanged in a mutated NS3 proteinase in which active-site residues His-57 and Ser-139 were replaced with Ala, suggesting that the zinc atom is not directly involved in catalysis but rather may have a structural role. Based on data from site-directed mutagenesis combined with zinc content determination, we propose that Cys-97, Cys-99, Cys-145, and His-149 coordinate the structural zinc in the HCV NS3 proteinase. A similar metal binding motif is found in 2A proteinases of enteroviruses and rhinoviruses, suggesting that these 2A proteinases and HCV NS3 proteinase are structurally related.
丙型肝炎病毒(HCV)的NS3蛋白酶包含在NS3蛋白的N端结构域内,是一种类胰凝乳蛋白酶丝氨酸蛋白酶,负责处理HCV多聚蛋白的非结构区。在本研究中,我们检测了NS3蛋白酶对二价金属离子的敏感性,这在该类蛋白酶中是不寻常的行为。通过使用无细胞偶联转录-翻译系统,我们发现HCV多聚蛋白的加工可被Zn2+激活(在较小程度上也可被Cd2+、Pb2+和Co2+激活),并被Cu2+和Hg2+离子抑制。对纯化的NS3蛋白酶结构域的元素分析显示存在等摩尔比的锌。在活性位点残基His-57和Ser-139被Ala取代的突变NS3蛋白酶中,锌含量未发生变化,这表明锌原子不直接参与催化,而是可能具有结构作用。基于定点诱变结合锌含量测定的数据,我们提出Cys-97、Cys-99、Cys-145和His-149与HCV NS3蛋白酶中的结构锌配位。在肠道病毒和鼻病毒的2A蛋白酶中发现了类似的金属结合基序,这表明这些2A蛋白酶与HCV NS3蛋白酶在结构上相关。