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苜蓿花叶病毒RNA 3'末端外壳蛋白结合位点的结构元件

Structural elements of the 3'-terminal coat protein binding site in alfalfa mosaic virus RNAs.

作者信息

Reusken C B, Bol J F

机构信息

Institute of Molecular Plant Sciences, Goriaeus Laboratories, Leiden University, The Netherlands.

出版信息

Nucleic Acids Res. 1996 Jul 15;24(14):2660-5. doi: 10.1093/nar/24.14.2660.

Abstract

The 3'-terminal of the three genomic RNAs of alfalfa mosaic virus (AIMV) and ilarviruses contain a number of AUGC-motifs separated by hairpin structures. Binding of coat protein (CP) to such elements in the RNAs is required to initiate infection of these viruses. Determinants for CP binding in the 3'-terminal 39 nucleotides (nt) of AIMV RNA 3 were analyzed by band-shift assays. From the 5'- to 3'-end this 39 nt sequence contains AUGC-motif 3, stem-loop structure 2 (STLP2), AUGC-motif 2, stem-loop structure 1 (STLP1) and AUGC-motif 1. A mutational analysis showed that all three AUGC-motifs were involved in CP binding. Mutation of the A- and U-residues of motifs 1 or 3 had no effect on CP binding but similar mutations in motif 2 abolished CP binding. A mutational analysis of the stem of STLP1 and STLP2 confirmed the importance of these hairpins for CP binding. Randomization of the sequence of the stems and loops of STLP1 and STLP2 had no effect on CP binding as long as the secondary structure was maintained. This indicates that the two hairpins are not involved in sequence-specific interactions with CP. They may function in a secondary structure-specific interaction with CP and/or in the assembly of the AUGC-motifs in a configuration required for CP binding.

摘要

苜蓿花叶病毒(AIMV)和等轴不稳环斑病毒属病毒的三种基因组RNA的3'末端含有多个由发夹结构隔开的AUGC基序。病毒外壳蛋白(CP)与RNA中的这些元件结合是这些病毒感染起始所必需的。通过凝胶迁移试验分析了AIMV RNA 3的3'末端39个核苷酸(nt)中CP结合的决定因素。从5'端到3'端,这个39 nt序列包含AUGC基序3、茎环结构2(STLP2)、AUGC基序2、茎环结构1(STLP1)和AUGC基序1。突变分析表明,所有三个AUGC基序都参与CP结合。基序1或3的A和U残基的突变对CP结合没有影响,但基序2中的类似突变消除了CP结合。对STLP1和STLP2茎的突变分析证实了这些发夹对CP结合的重要性。只要二级结构得以维持,STLP1和STLP2茎环序列的随机化对CP结合没有影响。这表明这两个发夹不参与与CP的序列特异性相互作用。它们可能在与CP的二级结构特异性相互作用中发挥作用和/或在CP结合所需构型的AUGC基序组装中发挥作用。

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