Takai-Igarashi Takako, Mizoguchi Riichiro
Computer Science, Graduate School of Information Science and Technology, University of Tokyo, 7-3-1 Hongou, Bunkyou-ku, Tokyo 113-0033, Japan.
Genome Inform. 2004;15(2):255-65.
Databases have collected masses of information concerning cell signaling pathways that includes information on pathways, molecular interactions as well as molecular complexes. However we have no general data model to represent comprehensive properties of cell signaling pathways, so that this type of information has been represented by two different data models that we call 'binary relation' and 'state transition'. The disagreement between the existing models derives from lack of consensus about a factor of causality in reactions in cell signaling pathways, which is often called 'signal'. We developed an ontology named CSNO (Cell Signaling Networks Ontology) based on device ontology. As device ontology is a research product of knowledge engineering, CSNO is the first application of it to biological knowledge. CSNO defines the factor of causality called 'signal', offers an integrative viewpoint for the two different data models, explicates intrinsic distinctions between signaling and metabolic pathways, and eliminates ambiguity from representation of complex molecules.
数据库已经收集了大量有关细胞信号通路的信息,这些信息包括通路、分子相互作用以及分子复合物的信息。然而,我们没有通用的数据模型来表示细胞信号通路的综合特性,因此这类信息一直由两种不同的数据模型来表示,我们称之为“二元关系”和“状态转换”。现有模型之间的分歧源于对细胞信号通路反应中一个因果因素(通常称为“信号”)缺乏共识。我们基于设备本体开发了一个名为CSNO(细胞信号网络本体)的本体。由于设备本体是知识工程的研究成果,CSNO是其在生物知识方面的首次应用。CSNO定义了名为“信号”的因果因素,为两种不同的数据模型提供了综合观点,阐明了信号通路和代谢通路之间的内在区别,并消除了复杂分子表示中的歧义。