Liu Q, Yong C B, Astell C R
Department of Biochemistry and Molecular Biology, University of British Columbia, Vancouver, Canada.
Virology. 1994 Jun;201(2):251-62. doi: 10.1006/viro.1994.1290.
Previous characterization of the terminal sequences of the minute virus of mice (MVM) genome demonstrated that the right hand palindrome contains two sequences, each the inverted complement of the other. However, the left hand palindrome was shown to exist as a unique sequence [Astell et al., J. Virol. 54: 179-185 (1985)]. The modified rolling hairpin (MRH) model for MVM replication provided an explanation of how the right hand palindrome could undergo hairpin transfer to generate two sequences, while the left end palindrome within the dimer bridge could undergo asymmetric resolution and retain the unique left end sequence. This report describes in vitro resolution of the wild-type dimer bridge sequence of MVM using recombinant (baculovirus) expressed NS-1 and a replication extract from LA9 cells. The resolution products are consistent with those predicted by the MRH model, providing support for this replication mechanism. In addition, mutant dimer bridge clones were constructed and used in the resolution assay. The mutant structures included removal of the asymmetry in the hairpin stem, inversion of the sequence at the initiating nick site, and a 2-bp deletion within one stem of the dimer bridge. In all cases, the mutant dimer bridge structures are resolved; however, the resolution pattern observed with the mutant dimer bridge compared with the wild-type dimer bridge is shifted toward symmetrical resolution. These results suggest that sequences within the left hand hairpin (and hence dimer bridge sequence) are responsible for asymmetric resolution and conservation of the unique sequence within the left hand palindrome of the MVM genome.
先前对小鼠微小病毒(MVM)基因组末端序列的特征分析表明,右手回文序列包含两个序列,彼此互为反向互补序列。然而,左手回文序列被证明是以独特序列形式存在的[Astell等人,《病毒学杂志》54: 179 - 185 (1985)]。MVM复制的改进型滚发夹(MRH)模型解释了右手回文序列如何通过发夹转移产生两个序列,而二聚体桥内的左端回文序列如何进行不对称拆分并保留独特的左端序列。本报告描述了使用重组(杆状病毒)表达的NS - 1和来自LA9细胞的复制提取物对MVM野生型二聚体桥序列进行体外拆分。拆分产物与MRH模型预测的结果一致,为这种复制机制提供了支持。此外,构建了突变二聚体桥克隆并用于拆分测定。突变结构包括去除发夹茎中的不对称性、反转起始切口位点的序列以及二聚体桥一个茎内的2个碱基对缺失。在所有情况下,突变二聚体桥结构都能被拆分;然而,与野生型二聚体桥相比,突变二聚体桥观察到的拆分模式向对称拆分方向偏移。这些结果表明,左手发夹内的序列(进而二聚体桥序列)负责MVM基因组左手回文序列内独特序列的不对称拆分和保守性。