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The global structures of a wild-type and poorly functional plant luteoviral mRNA pseudoknot are essentially identical

机译:野生型和功能低下的植物检疫病毒mRNA假结的整体结构基本相同

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摘要

The helical junction region of a −1 frameshift stimulating hairpin-type mRNA pseudoknot from sugarcane yellow leaf virus (ScYLV) is characterized by a novel C27·(G7–C14) loop 2–stem 1 minor groove base triple, which is stacked on a C8+·(G12–C28) loop 1–stem 2 major groove base triple. Substitution of C27 with adenosine reduces frameshifting efficiency to a level just twofold above the slip-site alone. Here, we show that the global structure of the C27A ScYLV RNA is nearly indistinguishable from the wild-type counterpart, despite the fact that the helical junction region is altered and incorporates the anticipated isostructural A27·(G7–C14) minor groove base triple. This interaction mediates a 2.3-Å displacement of C8+ driven by an A27 N6–C8+ O2 hydrogen bond as part of an A(n−1)·C+·G-Cn base quadruple. The helical junction regions of the C27A ScYLV and the beet western yellows virus (BWYV) pseudoknots are essentially superimposable, the latter of which contains an analogous A25·(G7–C14) minor groove base triple. These results reveal that the global ground-state structure is not strongly correlated with frameshift stimulation and point to a reduced thermodynamic stability and/or enhanced kinetic lability that derives from an altered helical junction architecture in the C27A ScYLV RNA as a significant determinant for setting frameshifting efficiencies in plant luteoviral mRNA pseudoknots.
机译:甘蔗黄叶病毒(ScYLV)-1移码刺激发夹型mRNA假结的螺旋连接区的特征是新颖的C27·(G7–C14)环2–茎1小沟基三倍体,堆叠在C8 + ·(G12–C28)回路1–杆2主槽底三重。用腺苷取代C27可使移码效率降低到仅比滑动位点高两倍的水平。在这里,我们显示了C27A ScYLV RNA的整体结构与野生型对应物几乎没有区别,尽管事实是螺旋连接区发生了改变,并结合了预期的同构A27·(G7-C14)小沟基三重结构。这种相互作用介导了由A27 N6-C8 + O2氢键(作为A(n-1)·C + 的2.3Å位移> + ·G-Cn基本四倍。 C27A ScYLV和甜菜西方黄病毒(BWYV)假结的螺旋交界区域基本上是可叠合的,后者包含类似的A25·(G7-C14)小沟基三元组。这些结果表明,整体基态结构与移码刺激没有强烈关系,并指出降低的热力学稳定性和/或增强的动力学不稳定性,这是由于C27A ScYLV RNA螺旋连接结构的改变而引起的,它是设置移码的重要决定因素。植物植物病毒mRNA假结的效率。

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