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New Method to Study the Vibrational Modes of Biomoleculesin the Terahertz Range Based on a Single-Stage Raman Spectrometer

机译:研究生物分子振动模式的新方法单级拉曼光谱仪的太赫兹范围内的辐射

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摘要

The low-frequency vibrational (LFV) modes of biomolecules reflect specific intramolecular and intermolecular thermally induced fluctuations that are driven by external perturbations, such as ligand binding, protein interaction, electron transfer, and enzymatic activity. Large efforts have been invested over the years to develop methods to access the LFV modes due to their importance in the studies of the mechanisms and biological functions of biomolecules. Here, we present a method to measure the LFV modes of biomolecules based on Raman spectroscopy that combines volume holographic filters with a single-stage spectrometer, to obtain high signal-to-noise-ratio spectra in short acquisition times. We show that this method enables LFV mode characterization of biomolecules even in a hydrated environment. The measured spectra exhibit distinct features originating from intra- and/or intermolecular collective motion and lattice modes. The observed modes are highly sensitive to the overall structure, size, long-range order, and configuration of the molecules, as well as to their environment. Thus, the LFV Ramanspectrum acts as a fingerprint of the molecular structure and conformationalstate of a biomolecule. The comprehensive method we present here iswidely applicable, thus enabling high-throughput study of LFV modesof biomolecules.
机译:生物分子的低频振动(LFV)模式反映了特定的分子内和分子间热诱导的波动,这些波动是由外部扰动驱动的,例如配体结合,蛋白质相互作用,电子转移和酶活性。多年来,由于其在研究生物分子的机制和生物学功能中的重要性,已投入大量精力来开发访问LFV模式的方法。在这里,我们提出了一种基于拉曼光谱法测量生物分子LFV模式的方法,该方法将体积全息滤光片与单级光谱仪结合在一起,可以在较短的采集时间内获得高信噪比光谱。我们表明,即使在水合环境中,该方法也可以实现生物分子的LFV模式表征。测得的光谱显示出源自分子内和/或分子间集体运动和晶格模式的独特特征。观察到的模式对分子的整体结构,大小,远距离有序和构型以及其环境高度敏感。因此,LFV拉曼光谱充当分子结构和构象的指纹生物分子的状态。我们在这里介绍的综合方法是广泛适用,因此可以对LFV模式进行高通量研究生物分子。

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