首页> 外文期刊>Acta crystallographica.Section D. Biological crystallography >Diffraction data analysis in the presence of radiation damage.
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Diffraction data analysis in the presence of radiation damage.

机译:衍射数据分析的辐射损伤。

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In macromolecular crystallography, the acquisition of a complete set of diffraction intensities typically involves a high cumulative dose of X-ray radiation. In the process of data acquisition, the irradiated crystal lattice undergoes a broad range of chemical and physical changes. These result in the gradual decay of diffraction intensities, accompanied by changes in the macroscopic organization of crystal lattice order and by localized changes in electron density that, owing to complex radiation chemistry, are specific for a particular macromolecule. The decay of diffraction intensities is a well defined physical process that is fully correctable during scaling and merging analysis and therefore, while limiting the amount of diffraction, it has no other impact on phasing procedures. Specific chemical changes, which are variable even between different crystal forms of the same macromolecule, are more difficult to predict, describe and correct in data. Appearing during the process of data collection, they result in gradual changes in structure factors and therefore have profound consequences in phasing procedures. Examples of various combinations of radiation-induced changes are presented and various considerations pertinent to the determination of the best strategies for handling diffraction data analysis in representative situations are discussed.
机译:在大分子晶体学,习得一套完整的衍射强度通常涉及到一个高的累积剂量x射线辐射。收购,辐照晶格经历了广泛的化学和物理的变化。衍射强度,伴随着变化在晶体的宏观组织晶格秩序和局部的变化电子密度,由于复杂的辐射化学,特定为特定高分子。强度是一个定义良好的物理过程这是完全在缩放和矫正合并分析,因此,限制衍射的数量,它没有其他影响在逐步程序。这是变量之间甚至不同的水晶吗形式相同的高分子,是更多很难预测,描述和正确的数据。集合,它们导致渐进的变化因此产生深远的结构因素影响逐步程序。辐射诱导的各种组合的变化介绍和各种注意事项相关的确定最好的策略来处理衍射数据分析在代表的情况下进行了讨论。

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