Gallinari P, Brennan D, Nardi C, Brunetti M, Tomei L, Steinkühler C, De Francesco R
Istituto di Ricerche di Biologia Molecolare P. Angeletti (IRBM), 00040 Pomezia (Rome), Italy.
J Virol. 1998 Aug;72(8):6758-69. doi: 10.1128/JVI.72.8.6758-6769.1998.
The hepatitis C virus (HCV) nonstructural 3 protein (NS3) contains at least two domains associated with multiple enzymatic activities; a serine protease activity resides in the N-terminal one-third of the protein, whereas RNA helicase activity and RNA-stimulated nucleoside triphosphatase activity are associated with the C-terminal portion. To study the possible mutual influence of these enzymatic activities, a full-length NS3 polypeptide of 67 kDa was expressed as a nonfusion protein in Escherichia coli, purified to homogeneity, and shown to retain all three enzymatic activities. The protease activity of the full-length NS3 was strongly dependent on the activation by a synthetic peptide spanning the central hydrophobic core of the NS4A cofactor. Once complexed with the NS4A-derived peptide, the full-length NS3 protein and the isolated N-terminal protease domain cleaved synthetic peptide substrates with comparable efficiency. We show that, as in the case of the isolated protease domain, the protease activity of full-length NS3 undergoes inhibition by the N-terminal cleavage products of substrate peptides corresponding to the NS4A-NS4B and NS5A-NS5B. We have also characterized and quantified the NS3 ATPase, RNA helicase, and RNA-binding activities under optimized reaction conditions. Compared with the isolated N-terminal and C-terminal domains, recombinant full-length NS3 did not show significant differences in the three enzymatic activities analyzed in independent in vitro assays. We have further explored the possible interdependence of the NS3 N-terminal and C-terminal domains by analyzing the effect of polynucleotides on the modulation of all NS3 enzymatic functions. Our results demonstrated that the observed inhibition of the NS3 proteolytic activity by single-stranded RNA is mediated by direct interaction with the protease domain rather than with the helicase RNA-binding domain.
丙型肝炎病毒(HCV)非结构3蛋白(NS3)至少包含两个与多种酶活性相关的结构域;丝氨酸蛋白酶活性位于该蛋白N端的三分之一处,而RNA解旋酶活性和RNA刺激的核苷三磷酸酶活性则与C端部分相关。为了研究这些酶活性之间可能的相互影响,将67 kDa的全长NS3多肽作为非融合蛋白在大肠杆菌中表达,纯化至同质,并显示保留所有三种酶活性。全长NS3的蛋白酶活性强烈依赖于由跨越NS4A辅助因子中心疏水核心的合成肽激活。一旦与NS4A衍生肽复合,全长NS3蛋白和分离的N端蛋白酶结构域以相当的效率切割合成肽底物。我们表明,与分离的蛋白酶结构域情况一样,全长NS3的蛋白酶活性受到对应于NS4A-NS4B和NS5A-NS5B的底物肽N端切割产物的抑制。我们还在优化的反应条件下对NS3 ATP酶、RNA解旋酶和RNA结合活性进行了表征和定量。与分离的N端和C端结构域相比,重组全长NS3在独立的体外分析中所分析的三种酶活性方面没有显示出显著差异。我们通过分析多核苷酸对所有NS3酶功能调节的影响,进一步探索了NS3 N端和C端结构域之间可能的相互依赖性。我们的结果表明,观察到的单链RNA对NS3蛋白水解活性的抑制是由与蛋白酶结构域的直接相互作用介导的,而不是与解旋酶RNA结合结构域的相互作用。