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登革病毒2型非结构蛋白(NS)5和NS3功能域之间的血清型特异性相互作用对病毒RNA复制至关重要。

Serotype-specific interactions among functional domains of dengue virus 2 nonstructural proteins (NS) 5 and NS3 are crucial for viral RNA replication.

作者信息

Teramoto Tadahisa, Balasubramanian Anuradha, Choi Kyung H, Padmanabhan Radhakrishnan

机构信息

From the Department of Microbiology and Immunology, School of Medicine, Georgetown University, Washington, D. C. 20057 and.

the Department of Biochemistry and Molecular Biology, University of Texas Medical Branch, Galveston, Texas 77555-0156.

出版信息

J Biol Chem. 2017 Jun 9;292(23):9465-9479. doi: 10.1074/jbc.M117.775643. Epub 2017 Apr 10.

Abstract

Four serotypes of mosquito-borne dengue virus (DENV), evolved from a common ancestor, are human pathogens of global significance for which there is no vaccine or antiviral drug available. The N-terminal domain of DENV NS5 has guanylyltransferase and methyltransferase (MTase), and the C-terminal region has the polymerase (POL), all of which are important for 5'-capping and RNA replication. The crystal structure of NS5 shows it as a dimer, but the functional evidence for NS5 dimer is lacking. Our studies showed that the substitution of DENV2 NS5 MTase or POL for DENV4 NS5 within DENV2 RNA resulted in a severe attenuation of replication in the transfected BHK-21 cells. A replication-competent species was evolved with the acquired mutations in the DENV2 and DENV4 NS5 MTase or POL domain or in the DENV2 NS3 helicase domain in the DENV2 chimera RNAs by repeated passaging of infected BHK-21 or mosquito cells. The linker region of seven residues in NS5, rich in serotype-specific residues, is important for the recovery of replication fitness in the chimera RNA. Our results, taken together, provide genetic evidence for a serotype-specific interaction between NS3 and NS5 as well as specific interdomain interaction within NS5 required for RNA replication. Genome-wide RNAseq analysis revealed the distribution of adaptive mutations in RNA quasispecies. Those within NS3 and NS5 are located at the surface and/or within the NS5 dimer interface, providing a functional significance to the crystal structure NS5 dimer.

摘要

四种由蚊子传播的登革病毒(DENV)血清型源自一个共同祖先,是具有全球意义的人类病原体,目前尚无可用的疫苗或抗病毒药物。DENV NS5的N端结构域具有鸟苷酸转移酶和甲基转移酶(MTase),C端区域具有聚合酶(POL),所有这些对于5'端加帽和RNA复制都很重要。NS5的晶体结构显示它为二聚体,但缺乏NS5二聚体的功能证据。我们的研究表明,在DENV2 RNA中用DENV2 NS5 MTase或POL替代DENV4 NS5会导致转染的BHK-21细胞中的复制严重减弱。通过感染的BHK-21或蚊子细胞的反复传代,在DENV2嵌合RNA的DENV2和DENV4 NS5 MTase或POL结构域或DENV2 NS3解旋酶结构域中获得突变后,产生了一种具有复制能力的毒株。NS5中富含血清型特异性残基的七个残基的连接区对于嵌合RNA中复制适应性的恢复很重要。我们的研究结果共同为RNA复制所需的NS3和NS5之间的血清型特异性相互作用以及NS5内的特定结构域间相互作用提供了遗传证据。全基因组RNAseq分析揭示了RNA准种中适应性突变的分布。NS3和NS5中的那些突变位于NS5二聚体界面的表面和/或内部,为NS5二聚体的晶体结构提供了功能意义。

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