Hann L E, Gehrke L
Division of Health Sciences and Technology, Massachusetts Institute of Technology, Cambridge 02139, USA.
J Virol. 1995 Aug;69(8):4986-93. doi: 10.1128/JVI.69.8.4986-4993.1995.
Poliovirus infection is accompanied by translational control that precludes translation of 5'-capped mRNAs and facilitates translation of the uncapped poliovirus RNA by an internal initiation mechanism. Previous reports have suggested that the capped alfalfa mosaic virus coat protein mRNA (AIMV CP RNA), which contains an unstructured 5' leader sequence, is unusual in being functionally active in extracts prepared from poliovirus-infected HeLa cells (PI-extracts). To identify the cis-acting nucleotide elements permitting selective AIMV CP expression, we tested capped mRNAs containing structured or unstructured 5' leader sequences in addition to an mRNA containing the poliovirus internal ribosome entry site (IRES). Translations were performed with PI-extracts and extracts prepared from mock-infected HeLa cells (MI-extracts). A number of control criteria demonstrated that the HeLa cells were infected by poliovirus and that the extracts were translationally active. The data strongly indicate that translation of RNAs lacking an internal ribosome entry site, including AIMV CP RNA, was severely compromised in PI-extracts, and we find no evidence that the unstructured AIMV CP RNA 5' leader sequence acts in cis to bypass the poliovirus translational control. Nevertheless, cotranslation assays in the MI-extracts demonstrate that mRNAs containing the unstructured AIMV CP RNA 5' untranslated region have a competitive advantage over those containing the rabbit alpha-globin 5' leader. Previous reports of AIMV CP RNA translation in PI-extracts likely describe inefficient expression that can be explained by residual cap-dependent initiation events, where AIMV CP RNA translation is competitive because of a diminished quantitative requirement for initiation factors.
脊髓灰质炎病毒感染伴随着翻译控制,这种控制会阻止5'端加帽mRNA的翻译,并通过内部起始机制促进未加帽的脊髓灰质炎病毒RNA的翻译。先前的报道表明,含有无结构5'前导序列的加帽苜蓿花叶病毒外壳蛋白mRNA(AIMV CP RNA)在从感染脊髓灰质炎病毒的HeLa细胞制备的提取物(PI提取物)中具有功能活性,这一点很不寻常。为了鉴定允许选择性表达AIMV CP的顺式作用核苷酸元件,我们除了测试含有脊髓灰质炎病毒内部核糖体进入位点(IRES)的mRNA外,还测试了含有结构化或无结构5'前导序列的加帽mRNA。翻译是用PI提取物和从模拟感染的HeLa细胞制备的提取物(MI提取物)进行的。一些对照标准表明HeLa细胞被脊髓灰质炎病毒感染,并且提取物具有翻译活性。数据强烈表明,在PI提取物中,缺乏内部核糖体进入位点的RNA(包括AIMV CP RNA)的翻译受到严重损害,并且我们没有发现无结构的AIMV CP RNA 5'前导序列顺式作用以绕过脊髓灰质炎病毒翻译控制的证据。然而,在MI提取物中的共翻译试验表明,含有无结构AIMV CP RNA 5'非翻译区的mRNA比含有兔α-珠蛋白5'前导序列的mRNA具有竞争优势。先前关于PI提取物中AIMV CP RNA翻译的报道可能描述的是低效表达,这可以用残留的帽依赖性起始事件来解释,其中AIMV CP RNA翻译具有竞争性是因为对起始因子的定量需求减少。