首页> 外文期刊>Nucleic Acids Research >Investigating the structural basis of purine specificity in the structures of MS2 coat protein RNA translational operator hairpins
【24h】

Investigating the structural basis of purine specificity in the structures of MS2 coat protein RNA translational operator hairpins

机译:研究嘌呤特异性在MS2外壳蛋白RNA翻译操纵子发夹结构中的结构基础

获取原文
获取原文并翻译 | 示例
           

摘要

We have determined the structures of complexes between the phage MS2 coat protein and variants of the replicase translational operator in order to explore the sequence specificity of the RNA-protein interaction. The 19-nt RNA hairpins studied have substitutions at two positions that have been shown to be important for specific binding. At one of these positions, -10, which is a bulged adenosine (A) in the stem of the wild-type operator hairpin, substitutions were made with guanosine (G), cytidine (C) and two non-native bases, 2-aminopurine (2AP) and inosine (I). At the other position, -7 in the hairpin loop, the native adenine was substituted with a cytidine. Of these, only the G-10, C-10 and C-7 variants showed interpretable density for the RNA hairpin. In spite of large differences in binding affinities, the structures of the variant complexes are very similar to the wild-type operator complex. For G-10 substitutions in hairpin variants that can form bulges at alternative places in the stem, the binding affinity is low and a partly disordered conformation is seen in the electron density maps. The affinity is similar to that of wild-type when the base pairs adjacent to the bulged nucleotide are selected to avoid alternative conformations. Both purines bind in a very similar way in a pocket in the protein. In the C-10 variant, which has very low affinity, the cytidine is partly inserted in the protein pocket rather than intercalated in the RNA stem. Substitution of the wild-type adenosine at position -7 by pyrimidines gives strongly reduced affinities, but the structure of the C-7 complex shows that the base occupies the same position as the A-7 in the wild-type RNA. It is stacked in the RNA and makes no direct contact with the protein.
机译:为了确定RNA-蛋白质相互作用的序列特异性,我们已经确定了噬菌体MS2外壳蛋白和复制酶翻译操纵子变体之间的复合物结构。研究的19-nt RNA发夹在两个位置具有取代,这些取代已显示对特异性结合很重要。在其中一个位置-10(它是野生型操纵子发夹茎上的膨出的腺苷(A))中,用鸟苷(G),胞苷(C)和两个非天然碱基2-取代氨基嘌呤(2AP)和肌苷(I)。在发夹环的另一个位置-7,天然腺嘌呤被胞苷取代。其中,只有G-10,C-10和C-7变体显示出RNA发夹的可解释密度。尽管结合亲和力差异很大,但变异体复合物的结构与野生型操纵子复合物非常相似。对于发夹变体中可能在茎的其他位置形成凸起的G-10取代,结合亲和力很低,并且在电子密度图中可以看到部分无序的构象。当选择与突出的核苷酸相邻的碱基对以避免替代构象时,亲和力与野生型相似。两种嘌呤都以非常相似的方式结合在蛋白质的口袋中。在亲和力很低的C-10变体中,胞苷部分插入蛋白质袋中,而不是插入RNA茎中。嘧啶取代-7位的野生型腺苷会导致亲和力大大降低,但C-7复合物的结构表明该碱基与野生型RNA中的A-7占据相同的位置。它堆积在RNA中,不与蛋白质直接接触。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号