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欧洲同步辐射装置(ESRF)上大分子晶体学X射线衍射数据的自动处理

Automatic processing of macromolecular crystallography X-ray diffraction data at the ESRF.

作者信息

Monaco Stéphanie, Gordon Elspeth, Bowler Matthew W, Delagenière Solange, Guijarro Matias, Spruce Darren, Svensson Olof, McSweeney Sean M, McCarthy Andrew A, Leonard Gordon, Nanao Max H

机构信息

Structural Biology Group, European Synchrotron Radiation Facility, 6 rue Jules Horowitz, 38043, Grenoble, France.

出版信息

J Appl Crystallogr. 2013 Jun 1;46(Pt 3):804-810. doi: 10.1107/S0021889813006195. Epub 2013 May 15.

Abstract

The development of automated high-intensity macromolecular crystallography (MX) beamlines at synchrotron facilities has resulted in a remarkable increase in sample throughput. Developments in X-ray detector technology now mean that complete X-ray diffraction datasets can be collected in less than one minute. Such high-speed collection, and the volumes of data that it produces, often make it difficult for even the most experienced users to cope with the deluge. However, the careful reduction of data during experimental sessions is often necessary for the success of a particular project or as an aid in decision making for subsequent experiments. Automated data reduction pipelines provide a fast and reliable alternative to user-initiated processing at the beamline. In order to provide such a pipeline for the MX user community of the European Synchrotron Radiation Facility (ESRF), a system for the rapid automatic processing of MX diffraction data from single and multiple positions on a single or multiple crystals has been developed. Standard integration and data analysis programs have been incorporated into the ESRF data collection, storage and computing environment, with the final results stored and displayed in an intuitive manner in the ISPyB (information system for protein crystallography beamlines) database, from which they are also available for download. In some cases, experimental phase information can be automatically determined from the processed data. Here, the system is described in detail.

摘要

同步加速器设施中自动化高强度大分子晶体学(MX)光束线的发展,使得样品通量显著提高。如今X射线探测器技术的发展意味着完整的X射线衍射数据集能够在不到一分钟的时间内收集完成。如此高速的数据收集及其产生的数据量,常常使得即便经验最为丰富的用户也难以应对这海量的数据。然而,在实验过程中仔细地进行数据精简,对于某个特定项目的成功而言往往是必要的,或者有助于为后续实验做出决策。自动化数据精简流程为用户在光束线进行手动处理提供了一种快速且可靠的替代方案。为了给欧洲同步辐射装置(ESRF)的MX用户群体提供这样一种流程,已开发出一种用于快速自动处理来自单块或多块晶体上单个或多个位置的MX衍射数据的系统。标准的积分和数据分析程序已被纳入ESRF的数据收集、存储和计算环境中,最终结果以直观的方式存储并显示在ISPyB(蛋白质晶体学光束线信息系统)数据库中,也可从该数据库下载这些结果。在某些情况下,可从处理后的数据中自动确定实验相位信息。在此,将对该系统进行详细描述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e1c/3654316/2e5bf850ebd6/j-46-00804-fig1.jpg

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