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A nearly on-axis spectroscopic system for simultaneously measuring UV–visible absorption and X-ray diffraction in the SPring-8 structural genomics beamline

机译:一个近轴光谱系统用于同时测量SPring-8结构基因组学光束线中的UV-可见吸收和X射线衍射

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摘要

UV–visible absorption spectroscopy is useful for probing the electronic and structural changes of protein active sites, and thus the on-line combination of X-ray diffraction and spectroscopic analysis is increasingly being applied. Herein, a novel absorption spectrometer was developed at SPring-8 BL26B2 with a nearly on-axis geometry between the X-ray and optical axes. A small prism mirror was placed near the X-ray beamstop to pass the light only 2° off the X-ray beam, enabling spectroscopic analysis of the X-ray-exposed volume of a crystal during X-ray diffraction data collection. The spectrometer was applied to NO reductase, a heme enzyme that catalyzes NO reduction to N2O. Radiation damage to the heme was monitored in real time during X-ray irradiation by evaluating the absorption spectral changes. Moreover, NO binding to the heme was probed via caged NO photolysis with UV light, demonstrating the extended capability of the spectrometer for intermediate analysis.
机译:紫外线-可见吸收光谱法可用于探测蛋白质活性位点的电子和结构变化,因此,X射线衍射和光谱分析的在线结合正在得到越来越多的应用。本文中,在SPring-8 BL26B2上开发了一种新颖的吸收光谱仪,其在X射线和光轴之间具有近轴几何形状。在X射线束光阑附近放置一个小棱镜镜,使光仅偏离X射线束2°,从而可以在X射线衍射数据收集过程中对晶体的X射线暴露体积进行光谱分析。该光谱仪应用于NO还原酶,NO是一种血红素酶,可催化NO还原为N2O。通过评估吸收光谱的变化,可以实时监控X射线辐射期间血红素的辐射损伤。此外,通过笼罩式NO用紫外光进行光解来探测NO与血红素的结合,这表明该光谱仪具有扩展的中间分析能力。

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