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缺乏长开放阅读框的传染性支气管炎病毒缺陷RNA的复制与包装

Replication and packaging of coronavirus infectious bronchitis virus defective RNAs lacking a long open reading frame.

作者信息

Pénzes Z, Wroe C, Brown T D, Britton P, Cavanagh D

机构信息

Division of Molecular Biology, Institute for Animal Health, Compton Laboratory, United Kingdom.

出版信息

J Virol. 1996 Dec;70(12):8660-8. doi: 10.1128/JVI.70.12.8660-8668.1996.

Abstract

The construction of a full-length clone of the avian coronavirus infectious bronchitis virus (IBV) defective RNA (D-RNA), CD-91 (9,080 nucleotides [Z. Penzes et al., Virology 203:286-293]), downstream of the bacteriophage T7 promoter is described. Electroporation of in vitro T7-transcribed CD-91 RNA into IBV helper virus-infected primary chick kidney cells resulted in the production of CD-91 RNA as a replicating D-RNA in subsequent passages. Three CD-91 deletion mutants were constructed--CD-44, CD-58, and CD-61--in which 4,639, 3,236, and 2,953 nucleotides, respectively, were removed from CD-91, resulting in the truncation of the CD-91 long open reading frame (ORF) from 6,465 to 1,311, 1,263, or 2,997 nucleotides in CD-44, CD-58, or CD-61, respectively. Electroporation of in vitro T7-transcribed RNA from the three constructs into IBV helper virus-infected cells resulted in the replication and packaging of CD-58 and CD-61 but not CD-44 RNA. The ORF of CD-61 was further truncated by the insertion of stop codons into the CD-61 sequence by PCR mutagenesis, resulting in constructs CD-61T11 (ORF: nucleotides 996 to 1,058, encoding 20 amino acids), CD-61T22 (ORF: nucleotides 996 to 2,294, encoding 432 amino acids), and CD-61T24 (ORF: nucleotides 996 to 2,450, encoding 484 amino acids), all of which were replicated and packaged to the same levels as observed for either CD-61 or CD-91. Analysis of the D-RNAs showed that the CD-91- or CD-61-specific long ORFs had not been restored. Our data indicate that IBV D-RNAs based on the natural D-RNA, CD-91, do not require a long ORF for efficient replication. In addition, a 1.4-kb sequence, corresponding to IBV sequence at the 5' end of the 1b gene, may be involved in the packaging of IBV D-RNAs or form part of a cis-acting replication element.

摘要

本文描述了在噬菌体T7启动子下游构建禽冠状病毒传染性支气管炎病毒(IBV)缺陷RNA(D-RNA)全长克隆CD-91(9080个核苷酸[Z. Penzes等人,《病毒学》203:286 - 293])的过程。将体外T7转录的CD-91 RNA电穿孔导入感染IBV辅助病毒的原代鸡肾细胞,在后续传代中产生了作为复制性D-RNA的CD-91 RNA。构建了三个CD-91缺失突变体——CD-44、CD-58和CD-61——分别从CD-91中去除了4639、3236和2953个核苷酸,导致CD-91的长开放阅读框(ORF)在CD-44、CD-58或CD-61中分别从6465个核苷酸截断为1311、1263或2997个核苷酸。将体外T7转录的这三种构建体的RNA电穿孔导入感染IBV辅助病毒的细胞,结果CD-58和CD-61的RNA能够复制和包装,而CD-44的RNA不能。通过PCR诱变在CD-61序列中插入终止密码子,进一步截断了CD-61的ORF,产生了构建体CD-61T11(ORF:996至1058个核苷酸,编码20个氨基酸)、CD-61T22(ORF:996至2294个核苷酸,编码432个氨基酸)和CD-61T24(ORF:996至2450个核苷酸,编码484个氨基酸),所有这些构建体的复制和包装水平与CD-61或CD-91相同。对D-RNA的分析表明,CD-91或CD-61特异性的长ORF并未恢复。我们的数据表明,基于天然D-RNA CD-91的IBV D-RNA高效复制不需要长ORF。此外,一个1.4 kb的序列,对应于1b基因5'端的IBV序列,可能参与IBV D-RNA的包装或构成顺式作用复制元件的一部分。

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