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起始窗口,微小核糖核酸病毒RNA上不依赖帽子结构的内部翻译起始中的一个独特元件。

Starting window, a distinct element in the cap-independent internal initiation of translation on picornaviral RNA.

作者信息

Pilipenko E V, Gmyl A P, Maslova S V, Belov G A, Sinyakov A N, Huang M, Brown T D, Agol V I

机构信息

Institute of Poliomyelitis and Viral Encephalitides Russian Academy of Medical Sciences, Moscow Region.

出版信息

J Mol Biol. 1994 Aug 19;241(3):398-414. doi: 10.1006/jmbi.1994.1516.

Abstract

Initiation of translation on picornaviral RNA templates occurs via cap-independent ribosome binding to a cis-acting element, internal ribosome entry site (IRES). Mapping of the starting point of translation relative to the IRES was attempted using Theiler's murine encephalomyelitis virus (TMEV) RNA as a model. The possibility that the starting point is determined by the conserved oligopyrimidine upstream of the initiator codon was studied. In contrast to poliovirus, neither the conserved oligopyrimidine nor an AUG at a fixed distance downstream of this oligopyrimidine are required for efficient translation of the TMEV RNA in Krebs-2 extracts or reticulocyte lysates or for viral infectivity; mutants lacking the oligopyrimidine/AUG tandem were stable upon passage in BHK-21 cells. A short template segment, the starting window, was defined, wherefrom ribosomes begin translation or downstream scanning depending, respectively, on the presence or absence of a good-context AUG within this window. Using a collection of the engineered TMEV mutant RNAs, the starting window was mapped to 16-17 nt downstream of the IRES and was found to be approximately a dozen nt long. The efficiency of translation initiation from an AUG linearly increased upon the 5'-->3' displacement of the initiator codon within the window. The competence of the starting window did not appear to depend markedly on its primary structure; however, it was completely inactivated ("closed") with concomitant dramatic inhibition of total protein synthesis upon conversion of the corresponding RNA segment into a double-stranded form.

摘要

微小核糖核酸病毒RNA模板上的翻译起始是通过不依赖帽结构的核糖体与顺式作用元件即内部核糖体进入位点(IRES)结合来实现的。以泰勒氏鼠脑脊髓炎病毒(TMEV)RNA为模型,尝试绘制相对于IRES的翻译起始点图谱。研究了起始点是否由起始密码子上游保守的寡嘧啶决定的可能性。与脊髓灰质炎病毒不同,在克雷布斯2细胞提取物或网织红细胞裂解物中高效翻译TMEV RNA或病毒感染性,既不需要保守的寡嘧啶,也不需要该寡嘧啶下游固定距离处的AUG;缺乏寡嘧啶/AUG串联的突变体在BHK - 21细胞传代时是稳定的。定义了一个短的模板片段,即起始窗口,核糖体分别根据该窗口内是否存在上下文良好的AUG从此处开始翻译或进行下游扫描。利用一系列工程改造的TMEV突变RNA,将起始窗口定位到IRES下游16 - 17个核苷酸处,发现其长度约为十几个核苷酸。起始密码子在窗口内从5'→3'位移时,从AUG起始的翻译起始效率呈线性增加。起始窗口的活性似乎并不明显取决于其一级结构;然而,当相应的RNA片段转化为双链形式时,它会完全失活(“关闭”),同时总蛋白合成受到显著抑制。

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