Chiu Wah, Schmid Michael F, Pintilie Grigore D, Lawson Catherine L
Department of Bioengineering, Stanford University, Stanford, California, USA; Division of CryoEM and Bioimaging, SLAC National Accelerator Laboratory, Stanford University, Menlo Park, California, USA.
Division of CryoEM and Bioimaging, SLAC National Accelerator Laboratory, Stanford University, Menlo Park, California, USA.
J Biol Chem. 2021 Jan-Jun;296:100560. doi: 10.1016/j.jbc.2021.100560. Epub 2021 Mar 18.
Cryogenic electron microscopy (cryo-EM) methods began to be used in the mid-1970s to study thin and periodic arrays of proteins. Following a half-century of development in cryo-specimen preparation, instrumentation, data collection, data processing, and modeling software, cryo-EM has become a routine method for solving structures from large biological assemblies to small biomolecules at near to true atomic resolution. This review explores the critical roles played by the Protein Data Bank (PDB) and Electron Microscopy Data Bank (EMDB) in partnership with the community to develop the necessary infrastructure to archive cryo-EM maps and associated models. Public access to cryo-EM structure data has in turn facilitated better understanding of structure-function relationships and advancement of image processing and modeling tool development. The partnership between the global cryo-EM community and PDB and EMDB leadership has synergistically shaped the standards for metadata, one-stop deposition of maps and models, and validation metrics to assess the quality of cryo-EM structures. The advent of cryo-electron tomography (cryo-ET) for in situ molecular cell structures at a broad resolution range and their correlations with other imaging data introduce new data archival challenges in terms of data size and complexity in the years to come.
低温电子显微镜(cryo-EM)方法于20世纪70年代中期开始用于研究蛋白质的薄而周期性阵列。经过半个世纪在低温样本制备、仪器设备、数据收集、数据处理和建模软件方面的发展,cryo-EM已成为一种常规方法,可在接近真实原子分辨率的情况下解析从大型生物组装体到小生物分子的结构。本文综述探讨了蛋白质数据库(PDB)和电子显微镜数据库(EMDB)与科学界合作发挥的关键作用,以开发必要的基础设施来存档cryo-EM图谱及相关模型。对cryo-EM结构数据的公开访问反过来又有助于更好地理解结构-功能关系,并推动图像处理和建模工具的开发。全球cryo-EM社区与PDB和EMDB领导层之间的合作协同塑造了元数据标准、图谱和模型的一站式存入以及评估cryo-EM结构质量的验证指标。在未来几年里,用于原位分子细胞结构的宽分辨率范围的低温电子断层扫描(cryo-ET)及其与其他成像数据的相关性,在数据大小和复杂性方面带来了新的数据存档挑战。