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扩展的亚基因组 mRNA 转录组和尼多病毒的编码能力。

Expanded subgenomic mRNA transcriptome and coding capacity of a nidovirus.

机构信息

Department of Biology, Georgia State University, Atlanta, GA 30303.

Proteomics and Metabolomics Facility, The Wistar Institute, Philadelphia, PA 19104.

出版信息

Proc Natl Acad Sci U S A. 2017 Oct 17;114(42):E8895-E8904. doi: 10.1073/pnas.1706696114. Epub 2017 Oct 4.

Abstract

Members of the order Nidovirales express their structural protein ORFs from a nested set of 3' subgenomic mRNAs (sg mRNAs), and for most of these ORFs, a single genomic transcription regulatory sequence (TRS) was identified. Nine TRSs were previously reported for the arterivirus (SHFV). In the present study, which was facilitated by next-generation sequencing, 96 SHFV body TRSs were identified that were functional in both infected MA104 cells and macaque macrophages. The abundance of sg mRNAs produced from individual TRSs was consistent over time in the two different cell types. Most of the TRSs are located in the genomic 3' region, but some are in the 5' ORF1a/1b region and provide alternative sources of nonstructural proteins. Multiple functional TRSs were identified for the majority of the SHFV 3' ORFs, and four previously identified TRSs were found not to be the predominant ones used. A third of the TRSs generated sg mRNAs with variant leader-body junction sequences. Sg mRNAs encoding E', GP2, or ORF5a as their 5' ORF as well as sg mRNAs encoding six previously unreported alternative frame ORFs or 14 previously unreported C-terminal ORFs of known proteins were also identified. Mutation of the start codon of two C-terminal ORFs in an infectious clone reduced virus yield. Mass spectrometry detected one previously unreported protein and suggested translation of some of the C-terminal ORFs. The results reveal the complexity of the transcriptional regulatory mechanism and expanded coding capacity for SHFV, which may also be characteristic of other nidoviruses.

摘要

套式病毒目成员通过嵌套的 3'亚基因组 mRNA(sg mRNA)表达其结构蛋白 ORF,大多数这些 ORF 都鉴定出一个单一的基因组转录调节序列(TRS)。先前已报道过动脉炎病毒(SHFV)的 9 个 TRS。在本研究中,借助下一代测序技术,鉴定出 96 个在感染 MA104 细胞和猕猴巨噬细胞中均具有功能的 SHFV 主体 TRS。在两种不同细胞类型中,从单个 TRS 产生的 sg mRNA 的丰度随时间保持一致。大多数 TRS 位于基因组的 3'区域,但有些位于 5'ORF1a/1b 区域,并提供非结构蛋白的替代来源。大多数 SHFV 3'ORF 都鉴定出多个功能 TRS,并且发现四个先前鉴定的 TRS 不是主要使用的 TRS。三分之一的 TRS 产生具有变体 5'leader-body 连接序列的 sg mRNAs。sg mRNAs 编码 E'、GP2 或 ORF5a 作为其 5'ORF,以及编码六个先前未报道的替代框架 ORF 或 14 个先前未报道的已知蛋白的 C 端 ORF 的 sg mRNAs 也被鉴定出。在感染性克隆中突变两个 C 端 ORF 的起始密码子会降低病毒产量。质谱检测到一个以前未报道的蛋白质,并提示翻译一些 C 端 ORF。结果揭示了 SHFV 转录调节机制的复杂性和扩展的编码能力,这也可能是其他套式病毒的特征。

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4
Found in translation: functions and evolution of a recently discovered alternative proteome.
Curr Opin Struct Biol. 2015 Jun;32:74-80. doi: 10.1016/j.sbi.2015.02.017. Epub 2015 Mar 18.
6
Simian hemorrhagic fever virus: Recent advances.
Virus Res. 2015 Apr 16;202:112-9. doi: 10.1016/j.virusres.2014.11.024. Epub 2014 Nov 29.
7
Two novel simian arteriviruses in captive and wild baboons (Papio spp.).
J Virol. 2014 Nov;88(22):13231-9. doi: 10.1128/JVI.02203-14. Epub 2014 Sep 3.
8
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Virology. 2014 Aug;462-463:351-62. doi: 10.1016/j.virol.2014.06.001. Epub 2014 Jul 16.
9
Accessory proteins of SARS-CoV and other coronaviruses.
Antiviral Res. 2014 Sep;109:97-109. doi: 10.1016/j.antiviral.2014.06.013. Epub 2014 Jul 1.
10
Functional analyses of the three simian hemorrhagic fever virus nonstructural protein 1 papain-like proteases.
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