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本文引用的文献

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RNA helicases: modulators of RNA structure.RNA解旋酶:RNA结构的调节因子
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2
Sequence and structural elements at the 3' terminus of bovine viral diarrhea virus genomic RNA: functional role during RNA replication.牛病毒性腹泻病毒基因组RNA 3'末端的序列和结构元件:RNA复制过程中的功能作用
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Identification and characterization of an RNA-dependent RNA polymerase activity within the nonstructural protein 5B region of bovine viral diarrhea virus.牛病毒性腹泻病毒非结构蛋白5B区域内RNA依赖性RNA聚合酶活性的鉴定与特性分析
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Recombinant dengue virus type 1 NS3 protein exhibits specific viral RNA binding and NTPase activity regulated by the NS5 protein.重组1型登革病毒NS3蛋白表现出由NS5蛋白调节的特异性病毒RNA结合和NTPase活性。
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Characterization of an autonomous subgenomic pestivirus RNA replicon.一种自主亚基因组瘟病毒RNA复制子的特性分析。
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Mutational analysis of the hepatitis C virus RNA helicase.丙型肝炎病毒RNA解旋酶的突变分析
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7
Biochemical properties of hepatitis C virus NS5B RNA-dependent RNA polymerase and identification of amino acid sequence motifs essential for enzymatic activity.丙型肝炎病毒NS5B RNA依赖性RNA聚合酶的生化特性及酶活性必需氨基酸序列基序的鉴定。
J Virol. 1997 Nov;71(11):8416-28. doi: 10.1128/JVI.71.11.8416-8428.1997.
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A point mutation abolishes the helicase but not the nucleoside triphosphatase activity of hepatitis C virus NS3 protein.一个点突变消除了丙型肝炎病毒NS3蛋白的解旋酶活性,但未消除其三磷酸核苷酶活性。
J Virol. 1997 Aug;71(8):6264-6. doi: 10.1128/JVI.71.8.6264-6266.1997.
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Serine protease of pestiviruses: determination of cleavage sites.瘟病毒的丝氨酸蛋白酶:切割位点的确定
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10
Bovine viral diarrhea virus NS3 serine proteinase: polyprotein cleavage sites, cofactor requirements, and molecular model of an enzyme essential for pestivirus replication.牛病毒性腹泻病毒NS3丝氨酸蛋白酶:多蛋白切割位点、辅因子需求以及瘟病毒复制所必需酶的分子模型
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牛病毒性腹泻病毒NS3蛋白的RNA解旋酶和三磷酸核苷酸酶活性对病毒复制至关重要。

The RNA helicase and nucleotide triphosphatase activities of the bovine viral diarrhea virus NS3 protein are essential for viral replication.

作者信息

Gu B, Liu C, Lin-Goerke J, Maley D R, Gutshall L L, Feltenberger C A, Del Vecchio A M

机构信息

Department of Molecular Virology and Host Defense, SmithKline Beecham Pharmaceuticals, Collegeville, Pennsylvania 19426-0989, USA.

出版信息

J Virol. 2000 Feb;74(4):1794-800. doi: 10.1128/jvi.74.4.1794-1800.2000.

DOI:10.1128/jvi.74.4.1794-1800.2000
PMID:10644352
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC111657/
Abstract

Helicase/nucleoside triphosphatase (NTPase) motifs have been identified in many RNA virus genomes. Similarly, all the members of the Flaviviridae family contain conserved helicase/NTPase motifs in their homologous NS3 proteins. Although this suggests that this activity plays a critical role in the viral life cycle, the precise role of the helicase/NTPase in virus replication or whether it is essential for virus replication is still unknown. To determine the role of the NS3 helicase/NTPase in the viral life cycle, deletion and point mutations in the helicase/NTPase motifs of the bovine viral diarrhea virus (BVDV) (NADL strain) NS3 protein designed to abolish either helicase activity alone (motif II, DEYH to DEYA) or both NTPase and helicase activity (motif I, GKT to GAT and deletion of motif VI) were generated. The C-terminal domain of NS3 (BVDV amino acids 1854 to 2362) of these mutants and wild type was expressed in bacteria, purified, and assayed for RNA helicase and ATPase activity. These mutations behaved as predicted with respect to RNA helicase and NTPase activities in vitro. When engineered back into an infectious cDNA for BVDV (NADL strain), point mutations in either the GKT or DEYH motif or deletion of motif VI yielded RNA transcripts that no longer produced infectious virus upon transfection of EBTr cells. Further analysis indicated that these mutants did not synthesize minus-strand RNA. These findings represent the first report unequivocably demonstrating that helicase activity is essential for minus-strand synthesis.

摘要

在许多RNA病毒基因组中已鉴定出解旋酶/核苷三磷酸酶(NTPase)基序。同样,黄病毒科的所有成员在其同源NS3蛋白中都含有保守的解旋酶/NTPase基序。尽管这表明该活性在病毒生命周期中起关键作用,但解旋酶/NTPase在病毒复制中的精确作用或其对病毒复制是否必不可少仍不清楚。为了确定NS3解旋酶/NTPase在病毒生命周期中的作用,构建了牛病毒性腹泻病毒(BVDV)(NADL株)NS3蛋白解旋酶/NTPase基序的缺失和点突变,旨在单独消除解旋酶活性(基序II,DEYH突变为DEYA)或同时消除NTPase和解旋酶活性(基序I,GKT突变为GAT以及基序VI缺失)。这些突变体和野生型的NS3 C末端结构域(BVDV氨基酸1854至2362)在细菌中表达、纯化,并检测RNA解旋酶和ATPase活性。这些突变在体外的RNA解旋酶和NTPase活性方面表现如预期。当将这些突变引入BVDV(NADL株)的感染性cDNA中时,GKT或DEYH基序中的点突变或基序VI的缺失产生的RNA转录本在转染EBTr细胞后不再产生感染性病毒。进一步分析表明,这些突变体不合成负链RNA。这些发现首次明确证明解旋酶活性对负链合成至关重要。