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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Time-resolved methods in biophysics. 10. Time-resolved FT-IR difference spectroscopy and the application to membrane proteins
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Time-resolved methods in biophysics. 10. Time-resolved FT-IR difference spectroscopy and the application to membrane proteins

机译:生物物理学中的时间分辨方法。 10.时间分辨FT-IR差异光谱及其在膜蛋白上的应用

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摘要

The introduction of time-resolved Fourier transform infrared (FT-IR) spectroscopy to biochemistry opened the possibility of monitoring the catalytic mechanism of proteins along their reaction pathways. The infrared approach is very fruitful, particularly in the application to membrane proteins where NMR and X-ray crystallography are challenged by the size and protein hydrophobicity, as well as by their limited time-resolution. Here, we summarize the principles and experimental realizations of time-resolved FT-IR spectroscopy developed in our group and compare with aspects emerging from other laboratories. Examples of applications to retinal proteins and energy transduction complexes are reviewed, which emphasize the impact of time-resolved FT-IR spectroscopy on the understanding of protein reactions on the level of single bonds.
机译:时间分辨傅立叶变换红外(FT-IR)光谱技术在生物化学中的应用为监测蛋白质沿其反应途径的催化机理提供了可能性。红外方法非常有成果,特别是在膜蛋白的应用中,在膜蛋白中NMR和X射线晶体学受到大小和蛋白疏水性以及有限的时间分辨率的挑战。在这里,我们总结了我们小组开发的时间分辨FT-IR光谱学的原理和实验实现,并与其他实验室中出现的方面进行了比较。审查了视网膜蛋白和能量转导复合物的应用实例,其中强调了时间分辨FT-IR光谱对理解单键水平的蛋白质反应的影响。

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