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Structure of hydrated oligonucleotides studied by in situ scanning tunneling microscopy.

机译:通过原位扫描隧道显微镜研究的水合寡核苷酸的结构。

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摘要

We have used the scanning tunneling microscope (STM) to image several synthetic oligonucleotides adsorbed onto a positively charged Au(111) electrode. The molecules were deposited and imaged in aqueous electrolyte under potential control, a procedure that eliminated the problem of the substrate artifacts that had limited some previous STM studies. Experiments were carried out with two types of single-stranded molecules (11 and 20 bases long) and three types of double-stranded molecules (20 and 61 base pairs and 31 bases with 25 bases paired and 6-base "sticky" ends). The molecules lie along symmetry directions on the reconstructed (23 x square root of 3) gold surface, and length measurements indicate that they adopt simple base-stacked structures. The base stacking distances are, within experimental uncertainty, equal to the 0.33 nm measured for polymeric aggregates of stacked purines by direct imaging in identical conditions. The images show features consistent with helical structures. Double helices have a major-groove periodicity that is consistent with a 36 degrees twist. The single helices appear to be more tightly twisted. A simple tunneling model of STM contrast generates good agreement between measured and calculated images.
机译:我们已经使用扫描隧道显微镜(STM)对吸附在带正电的Au(111)电极上的几种合成寡核苷酸成像。分子在电位控制下在水性电解质中沉积并成像,该程序消除了限制了先前STM研究的基底伪影的问题。用两种类型的单链分子(长11和20个碱基)和三种类型的双链分子(20和61个碱基对以及31个碱基对和25个碱基对和6个碱基的“粘性”末端)进行了实验。分子沿着对称方向位于重建的(23 x 3的平方根)金表面上,长度测量表明它们采用简单的碱基堆叠结构。基本堆积距离在实验不确定性范围内,等于在相同条件下通过直接成像对堆积嘌呤的聚合物聚集体测得的0.33 nm。图像显示出与螺旋结构一致的特征。双螺旋的主要凹槽周期与36度扭曲一致。单个螺旋似乎扭曲得更紧密。一个简单的STM对比隧道模型可以在测量图像和计算图像之间产生良好的一致性。

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