Yon Changsuek, Teramoto Tadahisa, Mueller Niklaus, Phelan Jessica, Ganesh Vannakambadi K, Murthy Krishna H M, Padmanabhan R
Department of Microbiology and Immunology, Georgetown University School of Medicine, Washington D. C. 20057, USA.
J Biol Chem. 2005 Jul 22;280(29):27412-9. doi: 10.1074/jbc.M501393200. Epub 2005 May 24.
Dengue virus type 2 (DEN2), a member of the Flaviviridae family, is a re-emerging human pathogen of global significance. DEN2 nonstructural protein 3 (NS3) has a serine protease domain (NS3-pro) and requires the hydrophilic domain of NS2B (NS2BH) for activation. NS3 is also an RNA-stimulated nucleoside triphosphatase (NTPase)/RNA helicase and a 5'-RNA triphosphatase (RTPase). In this study the first biochemical and kinetic properties of full-length NS3 (NS3FL)-associated NTPase, RTPase, and RNA helicase are presented. The NS3FL showed an enhanced RNA helicase activity compared with the NS3-pro-minus NS3, which was further enhanced by the presence of the NS2BH (NS2BH-NS3FL). An active protease catalytic triad is not required for the stimulatory effect, suggesting that the overall folding of the N-terminal protease domain contributes to this enhancement. In DEN2-infected mammalian cells, NS3 and NS5, the viral 5'-RNA methyltransferase/polymerase, exist as a complex. Therefore, the effect of NS5 on the NS3 NTPase activity was examined. The results show that NS5 stimulated the NS3 NTPase and RTPase activities. The NS5 stimulation of NS3 NTPase was dose-dependent until an equimolar ratio was reached. Moreover, the conserved motif, 184RKRK, of NS3 played a crucial role in binding to RNA substrate and modulating the NTPase/RNA helicase and RTPase activities of NS3.
登革2型病毒(DEN2)是黄病毒科的成员,是一种具有全球意义的再度出现的人类病原体。DEN2非结构蛋白3(NS3)具有丝氨酸蛋白酶结构域(NS3-pro),并且需要NS2B的亲水区(NS2BH)来激活。NS3还是一种RNA刺激的核苷三磷酸酶(NTPase)/RNA解旋酶和一种5'-RNA三磷酸酶(RTPase)。在本研究中,展示了全长NS3(NS3FL)相关的NTPase、RTPase和RNA解旋酶的首次生化和动力学特性。与缺失NS3-pro的NS3相比,NS3FL显示出增强的RNA解旋酶活性,而NS2BH(NS2BH-NS3FL)的存在进一步增强了这种活性。刺激作用不需要活性蛋白酶催化三联体,这表明N端蛋白酶结构域的整体折叠有助于这种增强。在感染DEN2的哺乳动物细胞中,NS3和病毒5'-RNA甲基转移酶/聚合酶NS5以复合物形式存在。因此,研究了NS5对NS3 NTPase活性的影响。结果表明,NS5刺激了NS3的NTPase和RTPase活性。NS5对NS3 NTPase的刺激呈剂量依赖性,直至达到等摩尔比。此外,NS3的保守基序184RKRK在与RNA底物结合以及调节NS3的NTPase/RNA解旋酶和RTPase活性中起关键作用。