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A novel form of RNA double helix based on G·U and C·A+ wobble base pairing

机译:基于G·U和C·A +摆动碱基配对的新型RNA双螺旋形式

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摘要

Wobble base pairs are critical in various physiological functions and have been linked to local structural perturbations in double-helical structures of nucleic acids. We report a 1.38-Å resolution crystal structure of an antiparallel octadecamer RNA double helix in overall A conformation, which includes a unique, central stretch of six consecutive wobble base pairs (W helix) with two G·U and four rare C·A+ wobble pairs. Four adenines within the W helix are N1-protonated and wobble-base-paired with the opposing cytosine through two regular hydrogen bonds. Combined with the two G·U pairs, the C·A+ base pairs facilitate formation of a half turn of W-helical RNA flanked by six regular Watson–Crick base pairs in standard A conformation on either side. RNA melting experiments monitored by differential scanning calorimetry, UV and circular dichroism spectroscopy demonstrate that the RNA octadecamer undergoes a pH-induced structural transition which is consistent with the presence of a duplex with C·A+ base pairs at acidic pH. Our crystal structure provides a first glimpse of an RNA double helix based entirely on wobble base pairs with possible applications in RNA or DNA nanotechnology and pH biosensors.
机译:摆动碱基对在各种生理功能中至关重要,并已与核酸双螺旋结构中的局部结构扰动相关。我们报告了一个在整体A构象中反平行的十八聚体RNA双螺旋的1.38-Å分辨率晶体结构,该结构包括六个连续的摆动碱基对(W螺旋)与两个G·U和四个罕见的C·A < sup> + 摆动对。 W螺旋中的四个腺嘌呤被N1质子化,并通过两个规则的氢键与相对的胞嘧啶摆动碱基配对。结合两个G·U对,C·A + 碱基对有助于形成两侧由六个标准A构型的常规Watson-Crick碱基对侧翼的W螺旋RNA半圈的形成。通过差示扫描量热法,紫外光谱和圆二色谱法监测的RNA熔解实验表明,十八烷的RNA经历了pH诱导的结构转变,这与存在C·A + 碱基对的双链体一致。酸性pH。我们的晶体结构提供了完全基于摆动碱基对的RNA双螺旋结构的第一瞥,并可能应用于RNA或DNA纳米技术和pH生物传感器。

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