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Phase-Sensitive Detection in Modulation Excitation Spectroscopy Applied to Potential Induced Electron Transfer in Cytochrome c Oxidase

机译:调制激发光谱中的相敏感检测应用于细胞色素c氧化酶中的潜在诱导电子转移

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摘要

Cytochrome c oxidase (CcO) from Rhodobacter sphaeroides was investigated by modulated excitation surface-enhanced infrared-absorption spectroscopy (SEIRAS). Sequential electron transfer (ET) within CcO was initiated by electrochemical excitation. During modulated excitation by periodic potential pulses with frequencies between 20 and 500 Hz, time-resolved infrared spectra were measured by the step-scan technique, with time resolution in the millisecond range. Conformational changes of the protein structure as a result of ET lead to rather complex SEIRA spectra with many overlapping bands embedded in a broad background signal. Phase-sensitive detection (PSD) was used to separate single components within the broad band of overlapping structural bands in the amide I region. PSD is able to extract the periodic response of single components with the same frequency as the excitation from noise or from static background and therefore enhances the signal-to-noise ratio. Moreover, PSD enables validation of the fit model used for the deconvolution of overlapping bands by analyzing phase lags of single components acquired at different stimulation frequencies. Phase lags between the evaluated vibrational components and the modulated excitation increase with increasing excitation frequencies, an inherent prerequisite of this evaluation method.
机译:通过调制的激发表面增强红外吸收光谱法(SEIRAS)研究了球形球形红细菌中的细胞色素c氧化酶(CcO)。 CcO中的顺序电子转移(ET)通过电化学激发来启动。在通过频率在20到500 Hz之间的周期性电势脉冲进行调制激励时,通过分步扫描技术测量了时间分辨的红外光谱,时间分辨率在毫秒范围内。 ET导致蛋白质结构的构象变化导致SEIRA光谱相当复杂,在宽广的背景信号中嵌入了许多重叠带。相敏检测(PSD)用于分离酰胺I区重叠结构带宽带内的单个组分。 PSD能够从噪声或静态背景中提取与激发相同频率的单个组件的周期性响应,从而提高了信噪比。此外,PSD通过分析在不同刺激频率下获取的单个分量的相位滞后,可以验证用于重叠带反卷积的拟合模型。被评估的振动分量和调制的激励之间的相位滞后随着激励频率的增加而增加,这是此评估方法的固有先决条件。

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