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用实验室信息管理系统管理大分子晶体学数据。

Managing macromolecular crystallographic data with a laboratory information management system.

机构信息

Biocenter Oulu and Faculty of Biochemistry and Molecular Medicine, University of Oulu, Oulu, Finland.

出版信息

Acta Crystallogr D Struct Biol. 2024 Aug 1;80(Pt 8):580-587. doi: 10.1107/S2059798324005680. Epub 2024 Jul 10.

Abstract

Protein crystallography is an established method to study the atomic structures of macromolecules and their complexes. A prerequisite for successful structure determination is diffraction-quality crystals, which may require extensive optimization of both the protein and the conditions, and hence projects can stretch over an extended period, with multiple users being involved. The workflow from crystallization and crystal treatment to deposition and publication is well defined, and therefore an electronic laboratory information management system (LIMS) is well suited to management of the data. Completion of the project requires key information on all the steps being available and this information should also be made available according to the FAIR principles. As crystallized samples are typically shipped between facilities, a key feature to be captured in the LIMS is the exchange of metadata between the crystallization facility of the home laboratory and, for example, synchrotron facilities. On completion, structures are deposited in the Protein Data Bank (PDB) and the LIMS can include the PDB code in its database, completing the chain of custody from crystallization to structure deposition and publication. A LIMS designed for macromolecular crystallography, IceBear, is available as a standalone installation and as a hosted service, and the implementation of key features for the capture of metadata in IceBear is discussed as an example.

摘要

蛋白质晶体学是研究大分子及其复合物的原子结构的一种成熟方法。成功确定结构的前提是获得具有衍射质量的晶体,这可能需要对蛋白质和条件进行广泛的优化,因此项目可能会持续很长时间,涉及多个用户。从结晶和晶体处理到沉积和出版的工作流程定义明确,因此电子实验室信息管理系统(LIMS)非常适合管理数据。项目完成需要所有步骤的关键信息可用,并且根据 FAIR 原则,这些信息也应可用。由于结晶样品通常在设施之间运输,因此 LIMS 中要捕获的一个关键功能是在家实验室的结晶设施与例如同步辐射设施之间交换元数据。完成后,结构将被存入蛋白质数据库(PDB),并且 LIMS 可以在其数据库中包含 PDB 代码,从而完成从结晶到结构沉积和出版的监管链。IceBear 是一个专为大分子晶体学设计的 LIMS,可作为独立安装和托管服务使用,并且讨论了在 IceBear 中实现捕获元数据的关键功能的示例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/776b/11301755/5685486c96a5/d-80-00580-fig1.jpg

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