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Five-dimensional crystallography

机译:五维晶体学

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摘要

A method for determining a comprehensive chemical kinetic mechanism in macromolecular reactions is presented. The method is based on five-dimensional crystallography, where, in addition to space and time, temperature is also taken into consideration and an analysis based on singular value decomposition is applied. First results of such a time-resolved crystallographic study are presented. Temperature-dependent time-resolved X-ray diffraction measurements were conducted on the newly upgraded BioCARS 14-ID-B beamline at the Advanced Photon Source and aimed at elucidating a comprehensive kinetic mechanism of the photoactive yellow protein photocycle. Extensive time series of crystallographic data were collected at two temperatures, 293 K and 303 K. Relaxation times of the reaction extracted from these time series exhibit measurable differences for the two temperatures, hence demonstrating that five-dimensional crystallography is feasible.
机译:提出了一种确定大分子反应中综合化学动力学机理的方法。该方法基于五维晶体学,其中除了空间和时间之外,还考虑了温度,并基于奇异值分解进行了分析。提出了这种时间分辨晶体学研究的初步结果。在新的升级版BioCARS 14-ID-B光束线上在先进光子源上进行了随温度变化的时间分辨X射线衍射测量,目的是阐明光敏黄色蛋白光循环的全面动力学机制。在293 K和303 K这两个温度下收集了大量的晶体学数据,从这两个时间序列中提取的反应的弛豫时间在两个温度下均显示出可测量的差异,因此证明了五维晶体学是可行的。

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