Winter Christof, Henschel Andreas, Kim Wan Kyu, Schroeder Michael
Biotechnological Centre of TU Dresden, Tatzberg 47-51, 01307 Dresden, Germany.
Nucleic Acids Res. 2006 Jan 1;34(Database issue):D310-4. doi: 10.1093/nar/gkj099.
SCOPPI, the structural classification of protein-protein interfaces, is a comprehensive database that classifies and annotates domain interactions derived from all known protein structures. SCOPPI applies SCOP domain definitions and a distance criterion to determine inter-domain interfaces. Using a novel method based on multiple sequence and structural alignments of SCOP families, SCOPPI presents a comprehensive geometrical classification of domain interfaces. Various interface characteristics such as number, type and position of interacting amino acids, conservation, interface size, and permanent or transient nature of the interaction are further provided. Proteins in SCOPPI are annotated with Gene Ontology terms, and the ontology can be used to quickly browse SCOPPI. Screenshots are available for every interface and its participating domains. Here, we describe contents and features of the web-based user interface as well as the underlying methods used to generate SCOPPI's data. In addition, we present a number of examples where SCOPPI becomes a useful tool to analyze viral mimicry of human interface binding sites, gene fusion events, conservation of interface residues and diversity of interface localizations. SCOPPI is available at http://www.scoppi.org.
SCOPPI(蛋白质-蛋白质界面的结构分类)是一个全面的数据库,它对源自所有已知蛋白质结构的结构域相互作用进行分类和注释。SCOPPI应用SCOP结构域定义和距离标准来确定结构域间的界面。通过基于SCOP家族的多序列和结构比对的新方法,SCOPPI呈现了结构域界面的全面几何分类。还进一步提供了各种界面特征,如相互作用氨基酸的数量、类型和位置、保守性、界面大小以及相互作用的永久性或短暂性。SCOPPI中的蛋白质用基因本体术语进行注释,该本体可用于快速浏览SCOPPI。每个界面及其参与的结构域都有屏幕截图。在此,我们描述基于网络的用户界面的内容和特征以及用于生成SCOPPI数据的基础方法。此外,我们展示了一些例子,说明SCOPPI如何成为分析人类界面结合位点的病毒模拟、基因融合事件、界面残基的保守性和界面定位多样性的有用工具。可通过http://www.scoppi.org访问SCOPPI。