Sorokin Anatoly, Le Novère Nicolas, Luna Augustin, Czauderna Tobias, Demir Emek, Haw Robin, Mi Huaiyu, Moodie Stuart, Schreiber Falk, Villéger Alice
J Integr Bioinform. 2015 Sep 4;12(2):264. doi: 10.2390/biecoll-jib-2015-264.
The Systems Biological Graphical Notation (SBGN) is an international community effort for standardized graphical representations of biological pathways and networks. The goal of SBGN is to provide unambiguous pathway and network maps for readers with different scientific backgrounds as well as to support efficient and accurate exchange of biological knowledge between different research communities, industry, and other players in systems biology. Three SBGN languages, Process Description (PD), Entity Relationship (ER) and Activity Flow (AF), allow for the representation of different aspects of biological and biochemical systems at different levels of detail. The SBGN Entity Relationship language (ER) represents biological entities and their interactions and relationships within a network. SBGN ER focuses on all potential relationships between entities without considering temporal aspects. The nodes (elements) describe biological entities, such as proteins and complexes. The edges (connections) provide descriptions of interactions and relationships (or influences), e.g., complex formation, stimulation and inhibition. Among all three languages of SBGN, ER is the closest to protein interaction networks in biological literature and textbooks, but its well-defined semantics offer a superior precision in expressing biological knowledge.
系统生物学图形表示法(SBGN)是国际社会为生物途径和网络的标准化图形表示所做的努力。SBGN的目标是为具有不同科学背景的读者提供清晰明确的途径和网络图谱,并支持不同研究群体、行业以及系统生物学中的其他参与者之间高效准确地交流生物知识。SBGN的三种语言,即过程描述(PD)、实体关系(ER)和活动流(AF),允许在不同详细程度上表示生物和生化系统的不同方面。SBGN实体关系语言(ER)表示网络中的生物实体及其相互作用和关系。SBGN ER专注于实体之间的所有潜在关系,而不考虑时间因素。节点(元素)描述生物实体,如蛋白质和复合物。边(连接)提供相互作用和关系(或影响)的描述,例如复合物形成、刺激和抑制。在SBGN的所有三种语言中,ER在生物文献和教科书中最接近蛋白质相互作用网络,但其定义明确的语义在表达生物知识方面具有更高的精度。