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戊型肝炎病毒解旋酶结构域的 NTPase 和 5' 到 3' RNA 双链解旋活性。

NTPase and 5' to 3' RNA duplex-unwinding activities of the hepatitis E virus helicase domain.

机构信息

Hepatitis Division, National Institute of Virology, Microbial Containment Complex, Sus Road, Pashan, Pune, India 411021, USA.

出版信息

J Virol. 2010 Apr;84(7):3595-602. doi: 10.1128/JVI.02130-09. Epub 2010 Jan 13.

Abstract

Hepatitis E virus (HEV) is a causative agent of acute hepatitis, and it is the sole member of the genus Hepevirus in the family Hepeviridae. The open reading frame 1 (ORF1) protein of HEV encodes nonstructural polyprotein with putative domains for methyltransferase, cysteine protease, helicase and RNA-dependent RNA polymerase. It is not yet known whether ORF1 functions as a single protein with multiple domains or is processed to form separate functional units. On the basis of amino acid conserved motifs, HEV helicase has been grouped into helicase superfamily 1 (SF-1). In order to examine the RNA helicase activity of the NTPase/helicase domain of HEV, the region (amino acids 960 to 1204) was cloned and expressed as histidine-tagged protein in Escherichia coli (HEV Hel) and purified. HEV Hel exhibited NTPase and RNA unwinding activities. Enzyme hydrolyzed all rNTPs efficiently, dATP and dCTP with moderate efficiency, while it showed less hydrolysis of dGTP and dTTP. Enzyme showed unwinding of only RNA duplexes with 5' overhangs showing 5'-to-3' polarity. We also expressed and purified two HEV Hel mutants. Helicase mutant I, with substitution in the nucleotide-binding motif I (GKS to GAS), showed 30% ATPase activity. Helicase mutant II, with substitutions in the Mg(2+) binding motif II (DEAP to AAAP), showed 50% ATPase activity. Both mutants completely lost ability to unwind RNA duplexes with 5' overhangs. These findings represent the first report demonstrating NTPase/RNA helicase activity of the helicase domain of HEV ORF1.

摘要

戊型肝炎病毒(HEV)是急性肝炎的病原体,是肝炎病毒科 HEPEVIRIDAE 属的唯一成员。HEV 的开放阅读框 1(ORF1)蛋白编码具有假定甲基转移酶、半胱氨酸蛋白酶、解旋酶和 RNA 依赖性 RNA 聚合酶功能的非结构多蛋白。目前尚不清楚 ORF1 是否作为具有多个结构域的单一蛋白发挥作用,或者是否被加工形成独立的功能单位。根据氨基酸保守基序,HEV 解旋酶已被归入解旋酶超家族 1(SF-1)。为了研究 HEV NTPase/解旋酶结构域的 RNA 解旋酶活性,将该区域(氨基酸 960 至 1204)克隆并在大肠杆菌中表达为组氨酸标记蛋白(HEV Hel)并进行纯化。HEV Hel 表现出 NTPase 和 RNA 解旋活性。酶能有效地水解所有 rNTP,对 dATP 和 dCTP 的水解效率适中,而对 dGTP 和 dTTP 的水解效率较低。酶仅能解旋具有 5'突出的 RNA 双链,显示 5'-3'极性。我们还表达和纯化了两种 HEV Hel 突变体。解旋酶突变体 I,在核苷酸结合基序 I(GKS 突变为 GAS)中发生取代,显示出 30%的 ATPase 活性。解旋酶突变体 II,在 Mg(2+)结合基序 II(DEAP 突变为 AAAP)中发生取代,显示出 50%的 ATPase 活性。两个突变体完全丧失了解开具有 5'突出的 RNA 双链的能力。这些发现代表了首次报道 HEV ORF1 解旋酶结构域的 NTPase/RNA 解旋酶活性。

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