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本文引用的文献

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Cap-snatching mechanism in yeast L-A double-stranded RNA virus.酵母 L-A 双链 RNA 病毒的帽抢夺机制。
Proc Natl Acad Sci U S A. 2011 Oct 25;108(43):17667-71. doi: 10.1073/pnas.1111900108. Epub 2011 Oct 10.
2
Enzymology of RNA cap synthesis.RNA 帽合成的酶学。
Wiley Interdiscip Rev RNA. 2010 Jul-Aug;1(1):152-72. doi: 10.1002/wrna.19. Epub 2010 May 25.
3
An unconventional pathway of mRNA cap formation by vesiculoviruses.囊膜病毒非常规的 mRNA 帽形成途径。
Virus Res. 2011 Dec;162(1-2):100-9. doi: 10.1016/j.virusres.2011.09.012. Epub 2011 Sep 16.
4
Ribose 2'-O-methylation provides a molecular signature for the distinction of self and non-self mRNA dependent on the RNA sensor Mda5.核糖 2'-O-甲基化提供了一个分子特征,用于区分依赖 RNA 传感器 MDA5 的自我和非自我 mRNA。
Nat Immunol. 2011 Feb;12(2):137-43. doi: 10.1038/ni.1979. Epub 2011 Jan 9.
5
2'-O methylation of the viral mRNA cap evades host restriction by IFIT family members.病毒 mRNA 帽的 2'-O 甲基化逃避了 IFIT 家族成员的宿主限制。
Nature. 2010 Nov 18;468(7322):452-6. doi: 10.1038/nature09489.
6
Viruses know more than one way to don a cap.病毒有不止一种方式来戴上“帽子”。
Proc Natl Acad Sci U S A. 2010 Feb 23;107(8):3283-4. doi: 10.1073/pnas.0915061107. Epub 2010 Feb 18.
7
Histidine-mediated RNA transfer to GDP for unique mRNA capping by vesicular stomatitis virus RNA polymerase.组氨酸介导的 RNA 向 GDP 的转移,用于水疱性口炎病毒 RNA 聚合酶对独特 mRNA 的加帽。
Proc Natl Acad Sci U S A. 2010 Feb 23;107(8):3463-8. doi: 10.1073/pnas.0913083107. Epub 2010 Feb 8.
8
The HR motif in the RNA-dependent RNA polymerase L protein of Chandipura virus is required for unconventional mRNA-capping activity.Chandipura 病毒 RNA 依赖性 RNA 聚合酶 L 蛋白中的 HR 基序是非常规 mRNA-加帽活性所必需的。
J Gen Virol. 2010 May;91(Pt 5):1311-4. doi: 10.1099/vir.0.019307-0. Epub 2010 Jan 27.
9
The flavivirus NS5 protein is a true RNA guanylyltransferase that catalyzes a two-step reaction to form the RNA cap structure.黄病毒NS5蛋白是一种真正的RNA鸟苷酸转移酶,它催化两步反应以形成RNA帽结构。
RNA. 2009 Dec;15(12):2340-50. doi: 10.1261/rna.1609709. Epub 2009 Oct 22.
10
Ribose 2'-O methylation of the vesicular stomatitis virus mRNA cap precedes and facilitates subsequent guanine-N-7 methylation by the large polymerase protein.水泡性口炎病毒信使核糖核酸帽状结构的核糖2'-O甲基化先于并促进了由大型聚合酶蛋白进行的后续鸟嘌呤-N-7甲基化。
J Virol. 2009 Nov;83(21):11043-50. doi: 10.1128/JVI.01426-09. Epub 2009 Aug 26.

水疱病毒的体外加帽和转录。

In vitro capping and transcription of rhabdoviruses.

机构信息

Department of Molecular Genetics, Section of Virology, Lerner Research Institute, Cleveland Clinic, Cleveland, OH 44195, USA.

出版信息

Methods. 2013 Feb;59(2):188-98. doi: 10.1016/j.ymeth.2012.05.013. Epub 2012 Jun 8.

DOI:10.1016/j.ymeth.2012.05.013
PMID:22687619
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3449051/
Abstract

The RNA-dependent RNA polymerase L protein of vesicular stomatitis virus (VSV), a prototypic nonsegmented negative strand (NNS) RNA virus classified into the Rhabdoviridae family, has been used to investigate the fundamental molecular mechanisms of NNS RNA viral mRNA synthesis and processing. In vitro studies on mRNA cap formation with the VSV L protein eventually led to the discovery of the unconventional mRNA capping pathway catalyzed by the guanosine 5'-triphosphatase and RNA:GDP polyribonucleotidyltransferase (PRNTase) activities. The PRNTase activity is a novel enzymatic activity, which transfers 5'-monophosphorylated (p-) RNA from 5'-triphosphorylated (ppp-) RNA to GDP to form 5'-capped RNA (GpppRNA) in a viral mRNA-start sequence-dependent manner. This unconventional capping (pRNA transfer) reaction with PRNTase can be experimentally distinguished from the conventional capping (GMP transfer) reaction with eukaryotic GTP:RNA guanylyltransferase (GTase) on the basis of the following differences in their substrate specificity for the cap formation: PRNTase uses GDP and pppRNA, but not ppRNA, whereas GTase employs GTP, but not GDP, and ppRNA. The pRNA transfer reaction with PRNTase proceeds through a covalent enzyme-pRNA intermediate with a phosphoamide bond. Hence, to prove the PRNTase activity, it is necessary to demonstrate the following consecutive steps separately: (1) the enzyme forms a covalent enzyme-pRNA intermediate, and (2) the intermediate transfers pRNA to GDP. This article describes the methods for in vitro transcription and capping with the recombinant VSV L protein, which permit detailed characterization of its enzymatic reactions and mapping of active sites of its enzymatic domains. It is expected that these systems are adaptable to rhabdoviruses and, by extension, other NNS RNA viruses belonging to different families.

摘要

水疱性口炎病毒(VSV)的 RNA 依赖性 RNA 聚合酶 L 蛋白是一种典型的非节段负链(NNS)RNA 病毒,属于 Rhabdoviridae 科,已被用于研究 NNS RNA 病毒 mRNA 合成和加工的基本分子机制。使用 VSV L 蛋白进行体外 mRNA 帽形成研究最终导致发现了由鸟苷 5'-三磷酸酶和 RNA:GDP 聚核糖核苷酸转移酶(PRNTase)活性催化的非常规 mRNA 加帽途径。PRNTase 活性是一种新的酶活性,它以病毒 mRNA 起始序列依赖性的方式将 5'-单磷酸化(p-)RNA 从 5'-三磷酸化(ppp-)RNA 转移到 GDP 上,形成 5'-加帽 RNA(GpppRNA)。基于以下差异,这种具有 PRNTase 的非常规加帽(pRNA 转移)反应可以与真核生物 GTP:RNA 鸟苷酰转移酶(GTase)的常规加帽(GMP 转移)反应在实验上区分开来:PRNTase 使用 GDP 和 pppRNA,但不使用 ppRNA,而 GTase 则使用 GTP,但不使用 GDP 和 ppRNA。具有 PRNTase 的 pRNA 转移反应通过具有磷酸酰胺键的共价酶-pRNA 中间体进行。因此,要证明 PRNTase 活性,需要分别证明以下连续步骤:(1)酶形成共价酶-pRNA 中间体,(2)中间体将 pRNA 转移到 GDP 上。本文描述了使用重组 VSV L 蛋白进行体外转录和加帽的方法,这些方法允许对其酶反应进行详细表征,并对其酶结构域的活性位点进行作图。预计这些系统适用于 Rhabdoviridae,并且可以扩展到属于不同科的其他 NNS RNA 病毒。