Saibil Helen R, Grünewald Kay, Stuart David I
Crystallography, Institute for Structural and Molecular Biology, Birkbeck College, Malet Street, London WC1E 7HX, England.
Division of Structural Biology, Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford OX3 7BN, England.
Acta Crystallogr D Biol Crystallogr. 2015 Jan 1;71(Pt 1):127-35. doi: 10.1107/S1399004714025280.
Three-dimensional electron microscopy is an enormously powerful tool for structural biologists. It is now able to provide an understanding of the molecular machinery of cells, disease processes and the actions of pathogenic organisms from atomic detail through to the cellular context. However, cutting-edge research in this field requires very substantial resources for equipment, infrastructure and expertise. Here, a brief overview is provided of the plans for a UK national three-dimensional electron-microscopy facility for integrated structural biology to enable internationally leading research on the machinery of life. State-of-the-art equipment operated with expert support will be provided, optimized for both atomic-level single-particle analysis of purified macromolecules and complexes and for tomography of cell sections. The access to and organization of the facility will be modelled on the highly successful macromolecular crystallography (MX) synchrotron beamlines, and will be embedded at the Diamond Light Source, facilitating the development of user-friendly workflows providing near-real-time experimental feedback.
三维电子显微镜对于结构生物学家而言是一种极为强大的工具。如今,它能够让人们从原子细节直至细胞层面,了解细胞的分子机制、疾病过程以及致病生物的作用。然而,该领域的前沿研究需要在设备、基础设施和专业知识方面投入大量资源。在此,简要概述了英国用于整合结构生物学的国家三维电子显微镜设施的规划,以开展关于生命机制的国际领先研究。将提供配备专家支持的最先进设备,这些设备针对纯化大分子和复合物的原子级单颗粒分析以及细胞切片的断层扫描进行了优化。该设施的使用方式和组织模式将以非常成功的大分子晶体学(MX)同步加速器光束线为蓝本,并将落户于钻石光源中心,以促进开发能提供近乎实时实验反馈的用户友好型工作流程。