Berthomieu Catherine, Marboutin Laure, Dupeyrat François, Bouyer Pierre
Laboratoire des Interactions Protéine Métal, DSV-DEVM, UMR 6191 CNRS-CEA-Univ. Aix-Marseille II, CEA-Cadarache, 13108 Saint Paul-lez-Durance Cedex, France.
Biopolymers. 2006 Jul;82(4):363-7. doi: 10.1002/bip.20469.
We report the setup of an electrochemical cell with chemical-vapor deposition diamond windows and the use of a Bruker 66 SX FTIR spectrometer equipped with DTGS and Si-bolometer detectors and KBr and mylar beam splitters, to record on the same sample, FTIR difference spectra corresponding to the structural changes associated with the change in redox state of active sites in proteins in the whole 1800-50 cm(-1) region. With cytochrome c we show that reliable reduced-minus-oxidized FTIR difference spectra are obtained, which correspond to single molecular vibrations. Redox-sensitive IR modes of the cytochrome c are detected until 140 cm(-1) with a good signal to noise. This new setup is promising to analyze the infrared spectral region where metal-ligand vibrations are expected to contribute and to extend the analysis of vibrational properties to metal sites or redox states not accessible to (resonance) Raman spectroscopy.
我们报告了一种带有化学气相沉积金刚石窗口的电化学池的设置,并使用配备了DTGS和硅测辐射热计探测器以及KBr和聚酯薄膜分束器的布鲁克66 SX傅里叶变换红外光谱仪,以在整个1800 - 50 cm⁻¹区域内记录与蛋白质活性位点氧化还原状态变化相关的结构变化对应的傅里叶变换红外差谱。对于细胞色素c,我们表明获得了可靠的还原态减去氧化态的傅里叶变换红外差谱,其对应于单个分子振动。细胞色素c的氧化还原敏感红外模式在高达140 cm⁻¹处被检测到,具有良好的信噪比。这种新设置有望分析预期金属 - 配体振动会起作用的红外光谱区域,并将振动性质的分析扩展到(共振)拉曼光谱无法触及的金属位点或氧化还原状态。