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Synergy within structural biology of single crystal optical spectroscopy and X-ray crystallography

机译:单晶光谱学和X射线晶体学在结构生物学中的协同作用

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Advances in the adaptation of optical spectroscopy to monitor photo-induced or enzyme-catalyzed reactions in the crystalline state have enabled X-ray crystal structures to be accurately linked with spectroscopically defined intermediates. This, in turn, has led to a deeper understanding of the role protein structural changes play in function. The integration of optical spectroscopy with X-ray crystallography is growing and now extends beyond linking crystal structure to reaction intermediate. Recent examples of this synergy include applications in protein crystallization, X-ray data acquisition, radiation damage, and acquisition of phase information important for structure determination.
机译:光谱学在监测晶体状态下的光诱导或酶催化反应的适应性研究方面的进展使X射线晶体结构可以准确地与光谱确定的中间体连接。反过来,这导致人们对蛋白质结构变化在功能中的作用有了更深入的了解。光谱学与X射线晶体学的集成正在发展,现在已经超出了将晶体结构连接到反应中间体的范围。这种协同作用的最新实例包括在蛋白质结晶,X射线数据采集,辐射损伤以及对结构确定重要的相信息的采集中的应用。

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