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Colouring cryo-cooled crystals: online microspectrophotometry

机译:着色低温冷却的晶体:在线显微分光光度法

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摘要

X-rays can produce a high concentration of radicals within cryo-cooled macromolecular crystals. Some radicals have large extinction coefficients in the visible (VIS) range of the electromagnetic spectrum, and can be observed optically and spectrally. An online microspectrophotometer with high temporal resolution has been constructed that is capable of measuring UV/VIS absorption spectra (200–1100 nm) during X-ray data collection. The typical X-ray-induced blue colour that is characteristic of a wide range of cryo-conditions has been identified as trapped solvated electrons. Disulphide-containing proteins are shown to form disulphide radicals at millimolar concentrations, with absorption maxima around 400 nm. The solvated electrons and the disulphide radicals seem to have a lifetime in the range of seconds up to minutes at 100 K. The temperature dependence of the kinetics of X-ray-induced radical formation is different for the solvated electrons compared with the disulphide radicals. The online microspectrophotometer provides a technique complementary to X-ray diffraction for analysing and characterizing intermediates and redox states of proteins and enzymes.
机译:X射线可在低温冷却的大分子晶体内产生高浓度的自由基。一些自由基在电磁光谱的可见(VIS)范围内具有较大的消光系数,并且可以在光学和光谱方面进行观察。构建了具有高时间分辨率的在线显微分光光度计,该分光光度计能够在X射线数据收集过程中测量UV / VIS吸收光谱(200–1100 nm)。典型的X射线诱导的蓝色是多种低温条件的特征,已被识别为捕获的溶剂化电子。含二硫化物的蛋白质显示在毫摩尔浓度下形成二硫化物自由基,最大吸收约400 aroundnm。溶剂化电子和二硫化物自由基的寿命似乎在100 K范围内可长达数秒,甚至长达数分钟。与二硫化物自由基相比,溶剂化电子的X射线诱导的自由基形成动力学的温度依赖性不同。在线显微分光光度计提供了与X射线衍射互补的技术,用于分析和表征蛋白质和酶的中间体和氧化还原状态。

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