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The need for a shared database infrastructure: Combining X-ray crystallography and electron microscopy

机译:对共享数据库基础结构的需求:将X射线晶体学和电子显微镜相结合

摘要

Advances in structural biology are opening greater opportunities for understanding biological structures from the cellular to the atomic level. Particularly promising are the links that can be established between the information provided by electron microscopy and the atomic structures derived from X-ray crystallography and nuclear magnetic resonance spectroscopy. Combining such different kinds of structural data can result in novel biological information on the interaction of biomolecules in large supramolecular assemblies. As a consequence, the need to develop new databases in the field of structural biology that allow for an integrated access to data from all the experimental techniques is becoming critical. Pilot studies performed in recent years have already established a solid background as far as the basic information that an integrated macromolecular structure database should contain, as well as the basic principles for integration. These efforts started in the context of the BioImage project, and resuited in a first complete database prototype that provided a versatile platform for the linking of atomic models or X-ray diffraction data with electron microscopy information. Analysis of the requirements needed to combine data at different levels of resolution have resulted in sets of specifications that make possible the integration of all these different types in the context of a web environment. The case of a structural stuffy linking electron microscopy and X-ray data, which is already contained within the BioImage data base and in the Protein Data Bank, is used here to illustrate the current approach, while a general discussion highlights the urgent need for integrated databases.
机译:结构生物学的进步为理解从细胞到原子水平的生物学结构提供了更多的机会。在电子显微镜提供的信息与从X射线晶体学和核磁共振波谱得出的原子结构之间可以建立联系,这特别有希望。结合这些不同种类的结构数据可以产生有关大型超分子组装物中生物分子相互作用的新颖生物学信息。结果,迫切需要在结构生物学领域中开发新的数据库,以允许对所有实验技术的数据进行综合访问。就集成大分子结构数据库应包含的基本信息以及集成的基本原理而言,近年来进行的试点研究已经建立了坚实的背景。这些努力始于BioImage项目的背景,并重新适应了第一个完整的数据库原型,该原型为原子模型或X射线衍射数据与电子显微镜信息的链接提供了通用平台。对在不同分辨率下组合数据所需的需求进行分析后,得出了一系列规范,这些规范使在网络环境中集成所有这些不同类型成为可能。 BioImage数据库和Protein Data Bank中已经包含结构性闷气连接电子显微镜和X射线数据的情况,此处用于说明当前的方法,而一般性讨论强调了集成的迫切需要数据库。

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