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小鼠冠状病毒有效包装的缺陷干扰RNA分析:一个可能的RNA包装信号的定位

Analysis of efficiently packaged defective interfering RNAs of murine coronavirus: localization of a possible RNA-packaging signal.

作者信息

Makino S, Yokomori K, Lai M M

机构信息

Howard Hughes Medical Institute, University of Southern California School of Medicine, Los Angeles 90033.

出版信息

J Virol. 1990 Dec;64(12):6045-53. doi: 10.1128/JVI.64.12.6045-6053.1990.

Abstract

We have previously shown that most of the defective interfering (DI) RNA of mouse hepatitis virus (MHV) are not packaged into virions. We have now identified, after 21 serial undiluted passages of MHV, a small DI RNA, DIssF, which is efficiently packaged into virions. The DIssF RNA replicated at a high efficiency on its transfection into the helper virus-infected cells. The virus released from the transfected cells interfered strongly with mRNA synthesis and growth of helper virus. cDNA cloning and sequence analysis of DIssF RNA revealed that it is 3.6 kb and consists of sequences derived from five discontinuous regions of the genome of the nondefective virus. The first four regions (domains I to IV) from the 5' end are derived from gene 1, which presumably encodes the RNA polymerase of the nondefective virus. The entire domain I (859 nucleotides) and the first 750 nucleotides of domain II are also present in a previously characterized DI RNA, DIssE, which is not efficiently packaged into virions. Furthermore, the junction between these two domains is identical between the two DI RNAs. The remaining 77 nucleotides at the 3' end of domain II and all of domains III (655 nucleotides) and IV (770 nucleotides) are not present in DIssE RNA. These four domains are derived from gene 1. In contrast, the 3'-most domain (domain V, 447 nucleotides) is derived from the 3' end of the genomic RNA and is also present in DIssE. The comparison of primary sequences and packaging properties between DIsse and DIssF RNAs suggested that domains III and IV and part of the 3' end of domain II contain the packaging signal for MHV RNA. This conclusion was confirmed by inserting these DIssF-unique sequences into a DIssE cDNA construct; the in vitro-transcribed RNA from this hybrid construct was efficiently packaged into virion particles. DIssF RNA also contains an open reading frame, which begins from domain I and ends at the 5'-end 20 bases of domain III. In vitro translation of DIssF RNA and metabolic labeling of the virus-infected cells showed that this open reading frame is indeed translated into a 75-kDa protein. The structures of both DIssE and DIssF RNAs suggest that a protein-encoding capability is a common characteristic of MHV DI RNA.

摘要

我们之前已经表明,小鼠肝炎病毒(MHV)的大多数缺陷干扰(DI)RNA不会被包装进病毒粒子中。现在,我们在对MHV进行21次连续的未稀释传代后,鉴定出一种小的DI RNA,即DIssF,它能有效地被包装进病毒粒子中。将DIssF RNA转染到辅助病毒感染的细胞后,其能高效复制。从转染细胞中释放出的病毒强烈干扰了辅助病毒的mRNA合成和生长。对DIssF RNA进行cDNA克隆和序列分析表明,它长3.6 kb,由来自非缺陷病毒基因组五个不连续区域的序列组成。从5'端起的前四个区域(结构域I至IV)来自基因1,推测该基因编码非缺陷病毒的RNA聚合酶。整个结构域I(859个核苷酸)和结构域II的前750个核苷酸也存在于先前鉴定的一种DI RNA即DIssE中,DIssE不能有效地被包装进病毒粒子中。此外,这两种DI RNA在这两个结构域之间的连接处是相同的。结构域II 3'端的其余77个核苷酸以及整个结构域III(655个核苷酸)和结构域IV(770个核苷酸)在DIssE RNA中不存在。这四个结构域来自基因1。相比之下,最靠近3'端的结构域(结构域V,447个核苷酸)来自基因组RNA的3'端,也存在于DIssE中。对DIssE和DIssF RNA的一级序列和包装特性进行比较表明,结构域III和IV以及结构域II 3'端的一部分包含MHV RNA的包装信号。通过将这些DIssF特有的序列插入到DIssE cDNA构建体中,证实了这一结论;从这种杂交构建体体外转录的RNA能有效地被包装进病毒粒子中。DIssF RNA还包含一个开放阅读框,它从结构域I开始,在结构域III的5'端20个碱基处结束。对DIssF RNA进行体外翻译以及对病毒感染细胞进行代谢标记表明,这个开放阅读框确实被翻译成了一种75 kDa的蛋白质。DIssE和DIssF RNA的结构都表明,具有编码蛋白质的能力是MHV DI RNA的一个共同特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b096/248778/0c8a61405178/jvirol00067-0366-a.jpg

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