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重组MS2衣壳与RNA操纵子片段之间两种复合物的三维结构揭示了序列特异性的蛋白质-RNA相互作用。

The three-dimensional structures of two complexes between recombinant MS2 capsids and RNA operator fragments reveal sequence-specific protein-RNA interactions.

作者信息

Valegârd K, Murray J B, Stonehouse N J, van den Worm S, Stockley P G, Liljas L

机构信息

Department of Molecular Biology, Uppsala University, Uppsala, Box 590, S-751 24, Sweden.

出版信息

J Mol Biol. 1997 Aug 1;270(5):724-38. doi: 10.1006/jmbi.1997.1144.

Abstract

Crystal structures of two complexes between recombinant MS2 capsids and RNA operator fragments have been determined at 2.7 A resolution. The coat protein of the RNA bacteriophage MS2 is bifunctional; it forms the icosahedral virus shell to protect the viral nucleic acid and it acts as a translational repressor by binding with high specificity to a unique site on the RNA, a single stem-loop structure, containing the initiation codon of the gene for the viral replicase. In order to determine the structure of these protein-RNA complexes, we have used chemically synthesized variants of the stem-loop fragment and soaked them into crystals of recombinant capsids. The RNA stem-loop, as bound to the protein, forms a crescent-like structure and interacts with the surface of the beta-sheet of a coat protein dimer. It makes protein contacts with seven phosphate groups on the 5' side of the stem-loop, with a pyrimidine base at position -5, which stacks onto a tyrosine, and with two exposed adenine bases, one in the loop and one at a bulge in the stem. Replacement of the wild-type uridine with a cytosine at position -5 increases the affinity of the RNA to the dimer significantly. The complex with RNA stem-loop having cytosine at this position differs from that of the wild-type complex mainly by having one extra intramolecular RNA interaction and one extra water-mediated hydrogen bond.

摘要

已在2.7埃分辨率下测定了重组MS2衣壳与RNA操纵子片段之间两种复合物的晶体结构。RNA噬菌体MS2的外壳蛋白具有双重功能;它形成二十面体病毒外壳以保护病毒核酸,并通过与RNA上的一个独特位点(一个包含病毒复制酶基因起始密码子的单茎环结构)高度特异性结合而充当翻译阻遏物。为了确定这些蛋白质-RNA复合物的结构,我们使用了茎环片段的化学合成变体,并将它们浸泡到重组衣壳的晶体中。与蛋白质结合的RNA茎环形成新月形结构,并与衣壳蛋白二聚体的β折叠表面相互作用。它与茎环5'侧的七个磷酸基团、位于-5位的嘧啶碱基(该碱基堆积在一个酪氨酸上)以及两个暴露的腺嘌呤碱基(一个在环中,一个在茎的凸起处)形成蛋白质接触。在-5位用胞嘧啶取代野生型尿苷会显著增加RNA与二聚体的亲和力。在该位置具有胞嘧啶的RNA茎环复合物与野生型复合物的不同之处主要在于具有一个额外的分子内RNA相互作用和一个额外的水介导氢键。

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