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Electrochemically Induced Far-Infrared Difference Spectroscopy on Metalloproteins Using Advanced Synchrotron Technology

机译:使用先进的同步加速器技术对金属蛋白进行电化学诱导的远红外差异光谱

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New information on a protein's structure, intra-and intermolecular hydrogen bonds, or metal-ligand bond properties can be unraveled in the far-infrared (far-IR)--terahertz--domain (600-3 cm~(-1) or 18-0.1 THz). In this study, we compare the performances of thermal sources with synchrotron far-IR to record reaction-induced Fourier transform infrared (FT-IR) difference signals with proteins in solution. Using the model protein Cu-azurin placed in a short path length electrochemical cell adapted for transmission spectroscopy in vacuum-purged optics, we show that minute spectral shifts induced by metal isotope labeling or temperature changes are detected using the far-IR beamline AILES of the synchrotron SOLEIL. On one hand, these data allow us to identify modes involving Cu-ligand vibrations and pave the way for the analysis of metal sites or metal redox states of proteins not amenable to resonance Raman spectroscopy. On another hand, small band shifts or changes in band intensity upon temperature modifications show that far-IR difference spectroscopy allows one to extract from a complex background hydrogen-bonding signatures directly relevant to the protein function. For Cu-azurin, a temperature-sensitive IR mode involving Cu(II)-His vibrations points to the role of a hydrogen bond between a Cu histidine ligand and the water solvent in tuning the Cu(II)-histidine bond properties. Furthermore, these experimental data support the possible role of a His_(117)-water interaction in electron-transfer activity of Cu-azurin proposed by theoretical studies.
机译:有关蛋白质结构,分子内和分子间氢键或金属-配体键性质的新信息可以在远红外(太-太赫兹)-结构域(600-3 cm〜(-1)或18-0.1 THz)。在这项研究中,我们比较了同步加速器远红外热源的性能,以记录溶液中蛋白质与反应诱导的傅立叶变换红外(FT-IR)差异信号。使用模型蛋白Cu-天青蓝蛋白放置在短程长度的电化学池中,该池适合于在真空清洗的光学系统中进行透射光谱分析,我们显示使用金属同位素标记或温度变化引起的微小光谱偏移可通过使用远红外光束线AILES进行检测。同步加速器SOLEIL。一方面,这些数据使我们能够识别涉及Cu-配体振动的模式,并为分析不适合共振拉曼光谱的蛋白质的金属位点或金属氧化还原状态铺平了道路。另一方面,温度改变后的小带移或带强度变化表明,远红外差光谱法可从复杂的与蛋白质功能直接相关的背景氢键签名中提取。对于铜天青素,涉及Cu(II)-His振动的温度敏感型IR模式指出,Cu组氨酸配体与水溶剂之间的氢键在调节Cu(II)-组氨酸键的性质中起着作用。此外,这些实验数据支持了理论研究提出的His_(117)-水相互作用在Cu-天青素的电子转移活性中的可能作用。

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