Percy N, Belsham G J, Brangwyn J K, Sullivan M, Stone D M, Almond J W
Department of Microbiology, University of Reading, Whiteknights, United Kingdom.
J Virol. 1992 Mar;66(3):1695-701. doi: 10.1128/JVI.66.3.1695-1701.1992.
A series of genetic deletions based partly on two RNA secondary structure models (M. A. Skinner, V. R. Racaniello, G. Dunn, J. Cooper, P. D. Minor, and J. W. Almond, J. Mol. Biol. 207:379-392, 1989; E. V. Pilipenko, V. M. Blinov, L. I. Romanova, A. N. Sinyakov, S. V. Maslova, and V. I. Agol, Virology 168:201-209, 1989) was made in the cDNA encoding the 5' noncoding region (5' NCR) of the poliovirus genome in order to study the sequences that direct the internal entry of ribosomes. The modified cDNAs were placed between two open reading frames in a single transcriptional unit and used to transfect cells in culture. Internal entry of ribosomes was detected by measuring translation from the second open reading frame in the bicistronic mRNA. When assayed alone, a large proportion of the poliovirus 5' NCR superstructure including several well-defined stem-loops was required for ribosome entry and efficient translation. However, in cells cotransfected with a complete infectious poliovirus cDNA, the requirement for the stem-loops in this large superstructure was reduced. The results suggest that virus infection modifies the cellular translational machinery, so that shortened forms of the 5' NCR are sufficient for cap-independent translation, and that the internal entry of ribosomes occurs by two distinct modes during the virus replication cycle.
基于两个RNA二级结构模型(M. A. 斯金纳、V. R. 拉卡涅洛、G. 邓恩、J. 库珀、P. D. 米诺、J. W. 阿尔蒙德,《分子生物学杂志》207:379 - 392,1989;E. V. 皮利彭科、V. M. 布林诺夫、L. I. 罗曼诺娃、A. N. 辛亚科夫、S. V. 马斯洛娃、V. I. 阿戈尔,《病毒学》168:201 - 209,1989)构建了一系列基因缺失突变体,用于研究脊髓灰质炎病毒基因组5'非编码区(5' NCR)中指导核糖体内部进入的序列。将修饰后的cDNA置于单个转录单元的两个开放阅读框之间,并用于转染培养细胞。通过测量双顺反子mRNA中第二个开放阅读框的翻译来检测核糖体的内部进入。单独检测时,脊髓灰质炎病毒5' NCR的大部分上层结构,包括几个明确的茎环结构,是核糖体进入和高效翻译所必需的。然而,在与完整的感染性脊髓灰质炎病毒cDNA共转染的细胞中,对这个大的上层结构中茎环结构的需求降低了。结果表明,病毒感染改变了细胞翻译机制,因此5' NCR的缩短形式足以进行不依赖帽子结构的翻译,并且在病毒复制周期中,核糖体的内部进入通过两种不同模式发生。