Fosmire J A, Hwang K, Makino S
Department of Microbiology, University of Texas, Austin 78712-1095.
J Virol. 1992 Jun;66(6):3522-30. doi: 10.1128/JVI.66.6.3522-3530.1992.
Previously, a mouse hepatitis virus (MHV) genomic sequence necessary for defective interfering (DI) RNA packaging into MHV particles (packaging signal) was mapped to within a region of 1,480 nucleotides in the MHV polymerase gene by comparison of two DI RNAs. One of these, DIssF, is 3.6 kb in size and exhibits efficient packaging, whereas the other, DIssE, which is 2.3 kb, does not. For more precise mapping, a series of mutant DIssF RNAs with deletions within this 1,480-nucleotide region were constructed. After transfection of in vitro-synthesized mutant DI RNA in MHV-infected cells, the virus product was passaged several times. The efficiency of DI RNA packaging into MHV virions was then estimated by viral homologous interference activity and by analysis of intracellular virus-specific RNAs and virion RNA. The results indicated that an area of 190 nucleotides was necessary for packaging. A computer-generated secondary structural analysis of the A59 and JHM strains of MHV demonstrated that within this 190-nucleotide region a stable stem-loop of 69 nucleotides was common between the two viruses. A DIssE-derived DI DNA which had these 69 nucleotides inserted into the DIssE sequence demonstrated efficient DI RNA packaging. Site-directed mutagenic analysis showed that of these 69 nucleotides, the minimum sequence of the packaging signal was 61 nucleotides and that destruction of the secondary structure abolished packaging ability. These studies demonstrated that an MHV packaging signal was present within the 61 nucleotides, which are located on MHV genomic RNA 1,381 to 1,441 nucleotides upstream of the 3' end of gene 1.
先前,通过比较两种缺陷干扰(DI)RNA,将缺陷干扰(DI)RNA包装到小鼠肝炎病毒(MHV)颗粒中所需的MHV基因组序列(包装信号)定位到MHV聚合酶基因中1480个核苷酸的区域内。其中之一DIssF大小为3.6 kb,具有高效包装能力,而另一个2.3 kb的DIssE则不具备。为了进行更精确的定位,构建了一系列在这1480个核苷酸区域内有缺失的突变DIssF RNA。在体外合成的突变DI RNA转染MHV感染的细胞后,病毒产物传代数次。然后通过病毒同源干扰活性以及细胞内病毒特异性RNA和病毒粒子RNA分析来评估DI RNA包装到MHV病毒粒子中的效率。结果表明,190个核苷酸的区域对于包装是必需的。对MHV的A59和JHM株进行计算机生成的二级结构分析表明,在这190个核苷酸区域内,两种病毒之间存在一个69个核苷酸的稳定茎环结构。将这69个核苷酸插入DIssE序列的源自DIssE的DI DNA表现出高效的DI RNA包装能力。定点诱变分析表明,在这69个核苷酸中,包装信号的最小序列为61个核苷酸,并且二级结构的破坏消除了包装能力。这些研究表明,MHV包装信号存在于61个核苷酸内,这些核苷酸位于基因1 3'端上游1381至1441个核苷酸的MHV基因组RNA上。