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Thymine/adenine diblock-oligonucleotide monolayers and hybrid brushes on gold: a spectroscopic study

机译:黄金上的胸腺嘧啶/腺嘌呤二嵌段-寡核苷酸单层和杂化刷:光谱研究

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BackgroundThe establishment of spectroscopic analysis techniques for complex, surface-bound biological systems is an important step toward the further application of these powerful experimental tools to new questions in biology and medicine.MethodsWe use a combination of the complementary spectroscopic techniques of X-ray photoelectron spectroscopy, Infrared reflection-absorption spectroscopy, and near-edge x-ray absorption fine structure spectroscopy to monitor the composition and molecular orientation in adenine/thymine diblock oligonucleotide films and their hybridized brushes on gold.ResultsWe demonstrate that the surface-bound probe molecules, consisting of a binding adenine block, d(A), and a sensing thymine block, d(T), deviate from the ideal L-shape model due to the internal intra- and intermolecular hybridization. This effect becomes more pronounced with increasing length of the d(A) block. Nevertheless, these films were found to hybridize well with the complementary target d(A) strands, especially if they were treated in advance to reduce internal interaction between the molecules. In spite of the structural complexity of these films, the hybridization efficiency correlated well with the potential accessibility of the sensing d(T) blocks, defined by their lateral spacing.ConclusionsThese findings are a good demonstration of the strength of multi-technique spectroscopic analysis when applied to assemblies of biological molecules intrinsically prone to complex interactions.
机译:背景技术建立复杂的,表面结合的生物系统的光谱分析技术是将这些强大的实验工具进一步应用于生物学和医学新问题的重要一步。方法我们结合使用X射线光电子能谱的互补光谱技术,红外反射吸收光谱法和近边缘X射线吸收精细结构光谱法监测金上腺嘌呤/胸腺嘧啶二嵌段寡核苷酸膜及其杂交刷的组成和分子取向。结果我们证明了表面结合的探针分子由由于内部的和分子间的杂交,结合的腺嘌呤嵌段d(A)和感测胸腺嘧啶嵌段d(T)的“α”偏离理想的L形模型。随着d(A)块长度的增加,此效果变得更加明显。然而,发现这些膜与互补的目标d(A)链杂交得很好,特别是如果事先对其进行处理以减少分子之间的内部相互作用的话。尽管这些膜的结构复杂,但杂交效率与感测d(T)块的潜在可及性密切相关(由其横向间距定义)。结论这些发现很好地证明了多技术光谱分析的强度。应用于本质上倾向于复杂相互作用的生物分子的组装。

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