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THz Characterization of DNA Four-Way Junction and Its Components

机译:DNA四向结及其成分的THz表征

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The four-way DNA junction that is a structural building block for DNA self-assemblies has been widely studied by diffraction methods and other physical techniques. However, terahertz (THz) spectroscopic characterization, which can reveal specific absorption fingerprints from different DNA structures and sequences, has not been reported yet. In this study, we present the spectral features of the four-way nucleic acid junction, its single- and double-stranded components, and their stoichiometric mixtures in the $hbox{10--25 cm}^{-1}$ frequency range. We demonstrated that sub-THz vibrational spectroscopy can be used for sensing and characterizing the nanosize biomolecular architectures with well-defined composition and sequence. The results show that we can distinguish between the spectral features for all materials examined. Samples with amounts of material as low as 400 ng can be characterized. Thus, the resolved vibrational spectroscopy in the low-THz range can be used as a powerful tool to characterize the DNA junction structures and its components, as well as to monitor the J1 junction formation process.
机译:四向DNA连接是DNA自组装的结构基础,已经通过衍射方法和其他物理技术进行了广泛研究。然而,尚未报道太赫兹(THz)光谱表征,该表征可以揭示来自不同DNA结构和序列的特异性吸收指纹。在这项研究中,我们介绍了在$ hbox {10--25 cm} ^ {-1} $频率范围内的四向核酸连接,其单链和双链组分及其化学计量混合物的光谱特征。我们证明了亚太赫兹振动光谱可以用于感测和表征具有明确定义的组成和序列的纳米级生物分子结构。结果表明,我们可以区分所检查的所有材料的光谱特征。可以表征材料含量低至400 ng的样品。因此,低THz范围内的分辨振动光谱可以用作表征DNA连接结构及其成分以及监测J1连接形成过程的有力工具。

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