首页> 外文期刊>Journal of Molecular Biology >Solution structure of the pseudoknot of SRV-1 RNA, involved in ribosomalframeshifting
【24h】

Solution structure of the pseudoknot of SRV-1 RNA, involved in ribosomalframeshifting

机译:SRV-1 RNA假结的溶液结构,涉及核糖体移码

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

RNA pseudoknots play important roles in many biological processes. In the simian retrovirus type-1 (SRV-1) a pseucloknot together with a heptanucleotide slippery sequence are responsible for programmed ribosomal frameshifting, a translational recoding mechanism used to control expression of the Gag-Pol polyprotein from overlapping gag and pol open reading frames. Here we present the three-dimensional structure of the SRV-1 pseucloknot determined by NMR. The structure has a classical H-type fold and forms a triple helix by interactions between loop 2 and, the minor groove of stem 1 involving base-base and base-sugar interactions and a ribose zipper motif, not identified in pseudoknots so far. Further stabilization is provided by a stack of five adenine bases and a, uracil in loop 2, enforcing a cytidine to bulge. The two stems of the pseudoknot stack upon each other, demonstrating that a pseucloknot without an intercalated base at the junction can induce efficient frameshifting. Results of mutagenesis data are explained in context with the present three-dimensional structure. The two base-pairs at the junction of stem 1 and 2 have a helical twist of approximately 49', allowing proper alignment and close approach of the three different strands at the junction. In addition to the overwound junction the structure is somewhat kinked between stem 1 and 2, assisting the single adenosine in spanning the major groove of stem 2. Geometrical models are, presented that reveal the importance of the magnitude of the helical twist at the junction in determining the overall architecture of classical pseudoknots, in particular related to the opening of the minor groove of stem 1 and the orientation of stern 2, which determines the number of loop 1 nucleotides that span its major groove.
机译:RNA假结在许多生物学过程中都起着重要作用。在猿猴逆转录病毒1型(SRV-1)中,假核结与七核苷酸滑序列一起负责程序化的核糖体移码,这是一种翻译编码机制,用于控制Gag-Pol多蛋白从重叠的gag和pol开放阅读框中的表达。在这里,我们介绍了由NMR确定的SRV-1假骨结的三维结构。该结构具有经典的H型折叠,并通过环2与茎1的次要凹槽之间的相互作用形成三重螺旋,茎的次要凹槽涉及碱基-碱基和碱基-糖的相互作用以及核糖拉链基序,到目前为止,在假结中尚未发现。通过在回路2中堆叠五个腺嘌呤碱基和尿嘧啶提供进一步的稳定作用,从而迫使胞苷鼓胀。假结的两个茎相互堆叠,表明假结在交界处没有插入碱基的假结可以诱导有效的移码。诱变数据的结果在本三维结构的背景下进行了解释。茎1和2交界处的两个碱基对具有大约49'的螺旋扭曲,从而使交界处的三个不同链正确对齐并紧密接近。除了过度缠绕的结点,结构在茎1和茎2之间有些扭结,有助于单个腺苷跨过茎2的主沟。提出了几何模型,揭示了在结1和结2处螺旋扭曲量的重要性。确定经典假结的整体结构,特别是与茎1的次要凹槽的开口和船尾2的方向有关,后者确定了跨越其主要凹槽的环1核苷酸的数量。

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