Benarroch Delphine, Selisko Barbara, Locatelli Giada A, Maga Giovanni, Romette Jean-Louis, Canard Bruno
Centre National de la Recherche Scientifique and Universités d'Aix-Marseille I et II, UMR 6098, Architecture et Fonction des Macromolécules Biologiques, ESIL-Case 925, 13288 Marseille cedex 9, France.
Virology. 2004 Oct 25;328(2):208-18. doi: 10.1016/j.virol.2004.07.004.
The nonstructural protein 3 (NS3) of Dengue virus (DV) is a multifunctional enzyme carrying activities involved in viral RNA replication and capping: helicase, nucleoside 5'-triphosphatase (NTPase), and RNA 5'-triphosphatase (RTPase). Here, a 54-kDa C-terminal domain of NS3 (DeltaNS3) bearing all three activities was expressed as a recombinant protein. Structure-based sequence analysis in comparison with Hepatitis C virus (HCV) helicase indicates the presence of a HCV-helicase-like catalytic core domain in the N-terminal part of DeltaNS3, whereas the C-terminal part seems to be different. In this report, we show that the RTPase activity of DeltaNS3 is Mg2+-dependent as are both helicase and NTPase activities. Mutational analysis shows that the RTPase activity requires an intact NTPase/helicase Walker B motif in the helicase core, consistent with the fact that such motifs are involved in the coordination of Mg2+. The R513A substitution in the C-terminal domain of DeltaNS3 abrogates helicase activity and strongly diminishes RTPase activity, indicating that both activities are functionally coupled. DV RTPase seems to belong to a new class of Mg2+-dependent RTPases, which use the active center of the helicase/NTPase catalytic core in conjunction with elements in the C-terminal domain.
登革病毒(DV)的非结构蛋白3(NS3)是一种多功能酶,具有参与病毒RNA复制和加帽的活性:解旋酶、核苷5'-三磷酸酶(NTPase)和RNA 5'-三磷酸酶(RTPase)。在此,携带所有三种活性的NS3的54 kDa C端结构域(DeltaNS3)被表达为重组蛋白。与丙型肝炎病毒(HCV)解旋酶相比的基于结构的序列分析表明,在DeltaNS3的N端部分存在一个类似HCV解旋酶的催化核心结构域,而C端部分似乎有所不同。在本报告中,我们表明DeltaNS3的RTPase活性与解旋酶和NTPase活性一样依赖于Mg2+。突变分析表明,RTPase活性需要解旋酶核心中完整的NTPase/解旋酶沃克B基序,这与这些基序参与Mg2+配位的事实一致。DeltaNS3 C端结构域中的R513A取代消除了解旋酶活性并强烈降低了RTPase活性,表明这两种活性在功能上是耦合的。DV RTPase似乎属于一类新的Mg2+依赖性RTPase,其利用解旋酶/NTPase催化核心的活性中心以及C端结构域中的元件。