Paolini C, De Francesco R, Gallinari P
Istituto di Ricerche di Biologia Molecolare 'P. Angeletti' (IRBM), Via Pontina Km 30.600, 00040 Pomezia (Rome), Italy.
J Gen Virol. 2000 May;81(Pt 5):1335-45. doi: 10.1099/0022-1317-81-5-1335.
The hepatitis C virus non-structural protein 3 (NS3) possesses a serine protease activity in the N-terminal one-third, whereas RNA-stimulated NTPase and helicase activities reside in the C-terminal portion. In this study, an N-terminal hexahistidine-tagged full-length NS3 polypeptide was expressed in Escherichia coli and purified to homogeneity by conventional chromatography. Detailed characterization of the helicase activity of NS3 is presented with regard to its binding and strand release activities on different RNA substrates. On RNA double-hybrid substrates, the enzyme was shown to perform unwinding activity starting from an internal ssRNA region of at least 3 nt and moving along the duplex in a 3' to 5' direction. In addition, data are presented suggesting that binding to ATP reduces the affinity of NS3 for ssRNA and increases its affinity for duplex RNA. Furthermore, we have ascertained the capacity of NS3 to specifically interact with and resolve the stem-loop RNA structure (SL I) within the 3'-terminal 46 bases of the viral genome. Finally, our analysis of NS3 processive unwinding under single cycle conditions by addition of heparin in both helicase and RNA-stimulated ATPase assays led to two conclusions: (i) NS3-associated helicase acts processively; (ii) most of the NS3 RNA-stimulated ATPase activity may not be directly coupled to translocation of the enzyme along the substrate RNA molecule.
丙型肝炎病毒非结构蛋白3(NS3)在N端三分之一区域具有丝氨酸蛋白酶活性,而RNA刺激的NTPase和解旋酶活性位于C端部分。在本研究中,一个N端带有六聚组氨酸标签的全长NS3多肽在大肠杆菌中表达,并通过常规色谱法纯化至均一性。本文详细描述了NS3解旋酶活性在不同RNA底物上的结合和链释放活性。在RNA双杂交底物上,该酶被证明从至少3个核苷酸的内部单链RNA区域开始进行解旋活性,并沿双链以3'到5'的方向移动。此外,数据表明与ATP结合会降低NS3对单链RNA的亲和力,并增加其对双链RNA的亲和力。此外,我们已经确定了NS3与病毒基因组3'端46个碱基内的茎环RNA结构(SL I)特异性相互作用并解开该结构的能力。最后,我们在解旋酶和RNA刺激的ATPase测定中通过添加肝素对单循环条件下NS3的持续解旋进行分析,得出两个结论:(i)与NS3相关的解旋酶具有持续活性;(ii)NS3的大部分RNA刺激的ATPase活性可能不直接与酶沿底物RNA分子的易位偶联。