Ray Debashish, White K Andrew
Department of Biology, York University, Toronto, Ontario, Canada M3J 1P3.
J Virol. 2003 Jan;77(1):245-57. doi: 10.1128/jvi.77.1.245-257.2003.
Defective interfering (DI) RNAs of Tomato bushy stunt virus (TBSV), a plus-sense RNA virus, comprise four conserved noncontiguous regions (I through IV) derived from the viral genome. Region III, a 70-nucleotide-long sequence corresponding to a genomic segment located 378 nucleotides upstream of the 3' terminus of the genome, has been found to enhance DI RNA accumulation by approximately 10-fold in an orientation-independent manner (D. Ray and K. A. White, Virology 256:162-171, 1999). In this study, a more detailed structure-function analysis of region III was conducted. RNA secondary-structure analyses indicated that region III contains stem-loop structures in both plus and minus strands. Through deletion analyses of a DI RNA, a primary determinant of region III activity was mapped to the 5'-proximal 35-nucleotide segment. Compensatory-type mutational analyses showed that a stem-loop structure in the minus strand of this subregion was required for enhanced DI RNA replication. The same stem-loop structure was also found to function in a position-independent manner in a DI RNA (albeit at reduced levels) and to be important for efficient accumulation within the context of the TBSV genome. Taken together, these observations suggest that the 5'-proximal segment of region III is a modular RNA replication element that functions primarily through the formation of an RNA hairpin structure in the minus strand.
番茄丛矮病毒(TBSV)是一种正义RNA病毒,其缺陷干扰(DI)RNA由来自病毒基因组的四个保守的非连续区域(I至IV)组成。区域III是一段70个核苷酸长的序列,对应于基因组3'末端上游378个核苷酸处的一个基因组片段,已发现它能以方向独立的方式将DI RNA积累提高约10倍(D. Ray和K. A. White,《病毒学》256:162 - 171,1999)。在本研究中,对区域III进行了更详细的结构 - 功能分析。RNA二级结构分析表明,区域III在正链和负链中均含有茎环结构。通过对一种DI RNA的缺失分析,区域III活性的主要决定因素被定位到5'近端的35个核苷酸片段上。补偿型突变分析表明,该亚区域负链中的一个茎环结构是增强DI RNA复制所必需的。在一种DI RNA中也发现相同的茎环结构以位置独立的方式发挥作用(尽管水平较低),并且对于在TBSV基因组背景下的有效积累很重要。综上所述,这些观察结果表明,区域III的5'近端片段是一个模块化的RNA复制元件,主要通过在负链中形成RNA发夹结构发挥作用。