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室温下全球 15 种不同蛋白质晶体类型的辐射损伤调查:一种新的衰减模型。

A survey of global radiation damage to 15 different protein crystal types at room temperature: a new decay model.

机构信息

ESRF, BP-220, 38043 Grenoble, France.

出版信息

J Synchrotron Radiat. 2013 Jan;20(Pt 1):14-22. doi: 10.1107/S0909049512049114. Epub 2012 Dec 6.

Abstract

The radiation damage rates to crystals of 15 model macromolecular structures were studied using an automated radiation sensitivity characterization procedure. The diffracted intensity variation with dose is described by a two-parameter model. This model includes a strong resolution-independent decay specific to room-temperature measurements along with a linear increase in overall Debye-Waller factors. An equivalent representation of sensitivity via a single parameter, normalized half-dose, is introduced. This parameter varies by an order of magnitude between the different structures studied. The data show a correlation of crystal radiation sensitivity with crystal solvent content but no dose-rate dependency was detected in the range 0.05-300 kGy s(-1). The results of the crystal characterization are suitable for either optimal planning of room-temperature data collection or in situ crystallization plate screening experiments.

摘要

采用自动化辐射敏感性特征描述程序研究了 15 个模型大分子结构晶体的辐射损伤率。用双参数模型描述了随剂量变化的衍射强度变化。该模型包括特定于室温测量的与分辨率无关的强烈衰减以及整体德拜-沃勒因子的线性增加。通过归一化半剂量的单一参数引入了对灵敏度的等效表示。该参数在研究的不同结构之间变化一个数量级。数据显示晶体辐射敏感性与晶体溶剂含量相关,但在 0.05-300 kGy s(-1)的范围内未检测到剂量率依赖性。晶体特征化的结果适用于室温数据采集的最佳规划或原位结晶板筛选实验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03ce/3943537/c45d3442f82f/s-20-00014-fig1.jpg

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