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使X射线束和探测器特性与不同完美度的蛋白质晶体相匹配。

Matching X-ray beam and detector properties to protein crystals of different perfection.

作者信息

Nave Colin

机构信息

Diamond Light Source Ltd, Harwell Science and Innovation Campus, Didcot OX11 0DE, UK.

出版信息

J Synchrotron Radiat. 2014 May;21(Pt 3):537-46. doi: 10.1107/S1600577514003609. Epub 2014 Mar 18.

Abstract

An analysis is given of the effect of different beam and detector parameters on the sharpness of recorded diffraction features for macromolecular crystals of different quality. The crystal quality parameters include crystal strain, crystal or mosaic block size and mosaic block misorientation. Calculations are given for instrument parameters such as angular resolution of the detector, beam divergence and wavelength bandpass to be matched to the intrinsic diffraction properties from these crystals with the aim of obtaining the best possible data out of each crystal. Examples are given using typical crystal imperfections obtained from the literature for both room-temperature and cryo-cooled crystals. Possible implications for the choice of X-ray source, beamline design, detector specifications, instrument set-up and data processing are discussed, together with the limitations of the approach.

摘要

分析了不同光束和探测器参数对不同质量大分子晶体记录的衍射特征清晰度的影响。晶体质量参数包括晶体应变、晶体或镶嵌块尺寸以及镶嵌块取向偏差。针对探测器的角分辨率、光束发散度和波长带宽等仪器参数进行了计算,以便与这些晶体的固有衍射特性相匹配,目的是从每个晶体中获取尽可能好的数据。给出了使用从文献中获得的典型室温及低温冷却晶体的晶体缺陷的示例。讨论了对X射线源选择、光束线设计、探测器规格、仪器设置和数据处理的可能影响,以及该方法的局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d01a/3998814/11c8fadee9ec/s-21-00537-fig1.jpg

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