Bosman Diederik W J, Blom Evert-Jan, Ogao Patrick J, Kuipers Oscar P, Roerdink Jos B T M
Institute for Mathematics and Computing Science, University of Groningen, Netherlands.
In Silico Biol. 2007;7(1):35-59.
Among the various research areas that comprise bioinformatics, systems biology is gaining increasing attention. An important goal of systems biology is the unraveling of dynamic interactions between components of living cells (e. g., proteins, genes). These interactions exist among others on genomic, transcriptomic, proteomic and metabolomic levels. The levels themselves are heavily interconnected, resulting in complex networks of different interacting biological entities. Currently, various bioinformatics tools exist which are able to perform a particular analysis on a particular type of network. Unfortunately, each tool has its own disadvantages hampering it to be used consistently for different types of networks or analytical methods. This paper describes the conceptual development of an open source extensible software framework that supports visualization and exploration of highly complex genomic networks, like metabolic or gene regulatory networks. The focus is on the conceptual foundations, starting from requirements, a description of the state of the art of network visualization systems, and an analysis of their shortcomings. We describe the implementation of some initial modules of the framework and apply them to a biological test case in bacterial regulation, which shows the relevance and feasibility of the proposed approach.
在构成生物信息学的各个研究领域中,系统生物学正日益受到关注。系统生物学的一个重要目标是揭示活细胞成分(如蛋白质、基因)之间的动态相互作用。这些相互作用存在于基因组、转录组、蛋白质组和代谢组等层面。这些层面本身紧密相连,形成了由不同相互作用的生物实体构成的复杂网络。目前,存在各种生物信息学工具,它们能够对特定类型的网络进行特定分析。不幸的是,每个工具都有其自身的缺点,妨碍它被一致地用于不同类型的网络或分析方法。本文描述了一个开源可扩展软件框架的概念发展,该框架支持对高度复杂的基因组网络(如代谢或基因调控网络)进行可视化和探索。重点是概念基础,从需求出发,描述网络可视化系统的现状,并分析其缺点。我们描述了该框架一些初始模块的实现,并将它们应用于细菌调控的一个生物学测试案例,这展示了所提出方法的相关性和可行性。