首页> 外文会议>Terahertz Physics, Devices, and Systems II; Proceedings of SPIE-The International Society for Optical Engineering; vol.6772 >Physics and Capabilities of Terahertz Spectroscopy to Study the Water-Biomolecule Interaction
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Physics and Capabilities of Terahertz Spectroscopy to Study the Water-Biomolecule Interaction

机译:太赫兹光谱学研究水-生物分子相互作用的物理和能力

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We have conducted the first study of the use of terahertz radiation to precisely identify pre-melting, melting, polymerization, depolymerization and the influence of polar water in sulfur by scanning frequency as a parametric function of temperature, and including identifying precursor and intermediate states. This spectroscopic study has also identified the orthorhombic-monoclinic phase transformation, and the melting of the superheated orthorhombic phase. This work also reports detection of a water absorption indicating a perturbation of the water molecules, associated with solvation spheres of the inter-chain dynamics, as a precursor to a transition, and supporting our earlier results showing the transducing capabilities of conglomerates of water molecules. Through a study of the fine structure of the water absorption, we are able to determine information about local polarization effects which contribute to the transducing properties of water relative to a ligand. The above inorganic polymer study is applied to the understanding of the response of biomolecules to thermal and chemical influences, and data are included giving optical, electrical, and pH properties of the DNA-water system, showing a major conformational transition at ~43℃, and various forms of reconformation of DNA macromolecule due to chemical perturbation. Our results include findings aimed at complementing existing inhibitors that are intended to prevent retrovirus/phage invasion of the host cell DNA.
机译:我们已经进行了太赫兹辐射的首次研究,通过扫描频率作为温度的参数函数来精确识别预熔化,熔融,聚合,解聚以及极性水在硫中的影响,包括识别前体和中间状态。该光谱研究还确定了斜方晶-单斜晶相转变和过热的斜方晶相的熔化。这项工作还报告了吸水的检测,表明水分子的扰动与链间动力学的溶剂化球有关,是过渡的前兆,并支持我们先前的结果,表明水分子团的转导能力。通过研究吸水的精细结构,我们能够确定有关局部极化效应的信息,这些极化效应有助于水相对于配体的转导特性。上述无机聚合物研究用于理解生物分子对热和化学影响的响应,并且所包含的数据提供了DNA-水系统的光学,电学和pH特性,显示了在〜43℃时的主要构象转变,以及由于化学干扰而导致的各种形式的DNA大分子重构。我们的结果包括旨在补充现有抑制剂的发现,这些抑制剂旨在防止逆转录病毒/噬菌体入侵宿主细胞DNA。

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