Andreeva Antonina, Howorth Dave, Chandonia John-Marc, Brenner Steven E, Hubbard Tim J P, Chothia Cyrus, Murzin Alexey G
MRC Centre for Protein Engineering, Hills Road, Cambridge CB2 0QH, UK.
Nucleic Acids Res. 2008 Jan;36(Database issue):D419-25. doi: 10.1093/nar/gkm993. Epub 2007 Nov 13.
The Structural Classification of Proteins (SCOP) database is a comprehensive ordering of all proteins of known structure, according to their evolutionary and structural relationships. The SCOP hierarchy comprises the following levels: Species, Protein, Family, Superfamily, Fold and Class. While keeping the original classification scheme intact, we have changed the production of SCOP in order to cope with a rapid growth of new structural data and to facilitate the discovery of new protein relationships. We describe ongoing developments and new features implemented in SCOP. A new update protocol supports batch classification of new protein structures by their detected relationships at Family and Superfamily levels in contrast to our previous sequential handling of new structural data by release date. We introduce pre-SCOP, a preview of the SCOP developmental version that enables earlier access to the information on new relationships. We also discuss the impact of worldwide Structural Genomics initiatives, which are producing new protein structures at an increasing rate, on the rates of discovery and growth of protein families and superfamilies. SCOP can be accessed at http://scop.mrc-lmb.cam.ac.uk/scop.
蛋白质结构分类(SCOP)数据库是根据已知结构的所有蛋白质的进化和结构关系进行的全面排序。SCOP层次结构包括以下级别:物种、蛋白质、家族、超家族、折叠和类别。在保持原始分类方案不变的情况下,我们改变了SCOP的制作方式,以应对新结构数据的快速增长,并促进新蛋白质关系的发现。我们描述了SCOP中正在进行的开发和新功能。与我们之前按发布日期顺序处理新结构数据不同,一种新的更新协议支持根据新蛋白质结构在家族和超家族级别检测到的关系对其进行批量分类。我们引入了预SCOP,即SCOP开发版本的预览,它能够更早地获取有关新关系的信息。我们还讨论了全球结构基因组学计划的影响,这些计划正在以越来越快的速度产生新的蛋白质结构,对蛋白质家族和超家族的发现率和增长率产生影响。可通过http://scop.mrc-lmb.cam.ac.uk/scop访问SCOP。