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肠道病毒内部核糖体进入位点茎环IV结构域中B环RNA的核磁共振结构:一个C到U的单碱基替换极大地改变了RNA的形状和柔韧性。

NMR structures of loop B RNAs from the stem-loop IV domain of the enterovirus internal ribosome entry site: a single C to U substitution drastically changes the shape and flexibility of RNA.

作者信息

Du Zhihua, Ulyanov Nikolai B, Yu Jinghua, Andino Raul, James Thomas L

机构信息

Department of Pharmaceutical Chemistry, University of California, San Francisco, California 94143-2280, USA.

出版信息

Biochemistry. 2004 May 18;43(19):5757-71. doi: 10.1021/bi0363228.

Abstract

The 5'-untranslated region of positive-strand RNA viruses harbors many cis-acting RNA structural elements that are important for various viral processes such as replication, translation, and packaging of new virions. Among these is loop B RNA of the stem-loop IV domain within the internal ribosomal entry site (IRES) of enteroviruses, including Poliovirus type 1 (PV1). Studies on PV1 have shown that specific recognition of loop B by the first KH (hnRNP K homology) domain of cellular poly(rC)-binding protein 2 (PCBP2) is essential for efficient translation of the viral mRNA. Here we report the NMR solution structures of two representative sequence variants of enteroviral loop B RNA. The two RNA variants differ at only one position (C vs U) within a six-nucleotide asymmetric internal loop sequence that is the binding site for the PCBP2 KH1 domain. Surprisingly, the two RNAs are drastically different in the overall shape and local dynamics of the bulge region. The RNA with the 5'-AUCCCU bulge sequence adopts an overall L shape. Its bulge nucleotides, especially the last four, are highly flexible and not very well defined by NMR. The RNA with the 5'-AUUCCU bulge sequence adopts an overall U shape, and its bulge sequence exhibits only limited flexibility. A detailed analysis of the two RNA structures and their dynamic properties, as well as available sequence data and known KH domain-RNA complex structures, not only provides insights into how loop B RNA might be recognized by the PCBP2 KH1 domain but also suggests a possible correlation between structural flexibility and pre-existing structural features for protein recognition.

摘要

正链RNA病毒的5'-非翻译区含有许多顺式作用RNA结构元件,这些元件对各种病毒过程如复制、翻译和新病毒粒子的包装都很重要。其中包括肠道病毒(包括1型脊髓灰质炎病毒,PV1)内部核糖体进入位点(IRES)茎环IV结构域的环B RNA。对PV1的研究表明,细胞多聚(rC)结合蛋白2(PCBP2)的第一个KH(异质性核糖核蛋白K同源性)结构域对环B的特异性识别对于病毒mRNA的有效翻译至关重要。在此,我们报告了肠道病毒环B RNA的两个代表性序列变体的核磁共振溶液结构。这两个RNA变体在一个六核苷酸不对称内部环序列中只有一个位置不同(C对U),该序列是PCBP2 KH1结构域的结合位点。令人惊讶的是,这两种RNA在凸起区域的整体形状和局部动力学方面有很大差异。具有5'-AUCCCU凸起序列的RNA整体呈L形。其凸起核苷酸,尤其是最后四个,高度灵活,核磁共振信号不太明确。具有5'-AUUCCU凸起序列的RNA整体呈U形,其凸起序列仅表现出有限的灵活性。对这两种RNA结构及其动态特性的详细分析,以及可用的序列数据和已知的KH结构域-RNA复合物结构,不仅有助于深入了解PCBP2 KH1结构域如何识别环B RNA,还提示了结构灵活性与蛋白质识别的预先存在的结构特征之间可能存在的相关性。

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