Knight J B, Si Z H, Stoltzfus C M
Department of Microbiology, University of Iowa, Iowa City 52242.
J Virol. 1994 Jul;68(7):4493-502. doi: 10.1128/JVI.68.7.4493-4502.1994.
Selective encapsidation of avian sarcoma-leukosis virus genomic RNA within virions requires recognition of a cis-acting signal (termed psi) located in the 5' leader of the RNA between the primer binding site and the splice donor site. Computer analyses indicate the potential for numerous secondary structure interactions within this region, including alternative conformations with similar free energy levels. We have constructed mutations designed to disrupt and restore potential secondary structure interactions within psi to investigate the role of these structures in RNA packaging. To test for the ability of psi mutants to package a heterologous reporter gene into virions, chimeric constructs bearing avian sarcoma virus 5' sequences fused to lacZ were transiently cotransfected with a nonpackageable helper construct into chicken embryo fibroblasts. lacZ virions produced from cotransfected cells were used to infect new cultures of chicken embryo fibroblasts, and then an in situ assay for individual cells expressing lacZ was done. Results obtained with this assay were confirmed in direct analyses of isolated virion RNA by RNase protection assays. Two mutations, predicted to disrupt a potential stem structure forming between elements located at nucleotides 160 to 167 and 227 to 234, severely inhibited packaging when either element was mutated. A construct in which these mutations were combined to restore potential base pairing between the two elements displayed a partially restored packaging phenotype. These results strongly suggest that the structure, referred to as the O3 stem, is required for efficient encapsidation of avian sarcoma virus RNA. Site-directed mutagenesis of additional sequence elements located in the O3 loop reduced packaging as measured by the indirect assay, suggesting that these sequences may also be components of the encapsidation signal. The possible implications of the O3 stem structure with regard to translation of avian sarcoma-leukosis virus short upstream open reading frames are discussed.
禽肉瘤-白血病病毒基因组RNA在病毒粒子内的选择性包装需要识别位于RNA 5'前导序列中引物结合位点和剪接供体位点之间的顺式作用信号(称为ψ)。计算机分析表明该区域内存在众多二级结构相互作用的可能性,包括具有相似自由能水平的替代构象。我们构建了旨在破坏和恢复ψ内潜在二级结构相互作用的突变体,以研究这些结构在RNA包装中的作用。为了测试ψ突变体将异源报告基因包装到病毒粒子中的能力,将携带与lacZ融合的禽肉瘤病毒5'序列的嵌合构建体与不可包装的辅助构建体瞬时共转染到鸡胚成纤维细胞中。从共转染细胞产生的lacZ病毒粒子用于感染鸡胚成纤维细胞的新培养物,然后对表达lacZ的单个细胞进行原位测定。通过核糖核酸酶保护试验对分离的病毒粒子RNA进行直接分析,证实了该试验获得的结果。预测会破坏位于核苷酸160至167和227至234处的元件之间形成的潜在茎结构的两个突变,当任一元件发生突变时,都会严重抑制包装。将这些突变组合以恢复两个元件之间潜在碱基配对的构建体表现出部分恢复的包装表型。这些结果强烈表明,称为O3茎的结构是禽肉瘤病毒RNA有效包装所必需的。通过间接测定法测量,位于O3环中的其他序列元件的定点诱变降低了包装,表明这些序列也可能是包装信号的组成部分。讨论了O3茎结构对禽肉瘤-白血病病毒短上游开放阅读框翻译的可能影响。