Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China.
Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201210, China.
Analyst. 2024 Sep 9;149(18):4605-4614. doi: 10.1039/d4an00697f.
L-Glutamic acid (L-Glu) is a basic unit of proteins and also serves as an important neurotransmitter in the central nervous system. Its structural properties are critical for biological functions and selective receptor recognition. Although this molecule has been extensively studied, the low frequency vibrational behavior that is closely related to conformational changes and the intermolecular interactions between L-Glu and its receptors are still unclear. In this study, we acquired the fingerprint spectrum of L-Glu by using air plasma terahertz (THz) time-domain spectroscopy in the 0.5-18 THz range. The low frequency vibrational characteristics of L-Glu were investigated through density functional theory (DFT) calculations. The THz responses of the ligand binding domain of the NMDAR-L-Glu complex were studied by the ONIOM method, with a focus on discussing the normal modes and interactions of ligand L-Glu and water molecules. The results illustrate that THz spectroscopy exhibits a sensitive response to the influence of L-Glu on the structure of the NMDAR. The water molecules in proteins have various strong vibration modes in the THz band, showing specificity, diversity and complexity of vibrational behavior. There is potential for influencing and regulating the structural stability of the NMDAR-L-Glu complex through water molecules.
L-谷氨酸(L-Glu)是蛋白质的基本组成部分,也是中枢神经系统中重要的神经递质。其结构特性对于生物功能和选择性受体识别至关重要。尽管该分子已被广泛研究,但与构象变化和 L-Glu 与其受体之间的分子间相互作用密切相关的低频振动行为仍不清楚。在这项研究中,我们使用空气等离子体太赫兹(THz)时域光谱在 0.5-18 THz 范围内获得了 L-Glu 的指纹光谱。通过密度泛函理论(DFT)计算研究了 L-Glu 的低频振动特性。通过 ONIOM 方法研究了 NMDAR-L-Glu 配合物配体结合域的 THz 响应,重点讨论了配体 L-Glu 和水分子的振动模式和相互作用。结果表明,THz 光谱对 L-Glu 对 NMDAR 结构影响的敏感响应。蛋白质中的水分子在太赫兹波段具有各种强振动模式,表现出振动行为的特异性、多样性和复杂性。水分子有可能通过影响和调节 NMDAR-L-Glu 配合物的结构稳定性。