Smidtas Serge, Yartseva Anastasia, Schächter Vincent, Képès François
Genoscope and CNRS UMR 8030, 91057 Evry cedex, France.
C R Biol. 2006 Dec;329(12):945-52. doi: 10.1016/j.crvi.2006.06.010. Epub 2006 Aug 7.
A major challenge for bioinformatics and theoretical biology is to build and analyse a unified model of biological knowledge resulting from high-throughput experiment data. Former work analyzed heterogeneous data (protein-protein interactions, genetic regulation, metabolism, synexpression) by modelling them by graphs. These models are unable to represent the qualitative dynamics of the reactions or to model the n-ary interactions. Here, MIB, the Model of Interactions in Biology, a bipartite model of biological networks, is introduced, and its use for topological analysis of the heterogeneous network is presented. Heterogeneous loops and links between synexpression pattern and underlying molecular mechanisms are proposed.
生物信息学和理论生物学面临的一个主要挑战是构建和分析一个由高通量实验数据产生的统一生物知识模型。先前的工作通过用图形对异质数据(蛋白质-蛋白质相互作用、基因调控、代谢、共表达)进行建模来进行分析。这些模型无法表示反应的定性动力学,也无法对n元相互作用进行建模。在此,引入了生物学相互作用模型(MIB),这是一种生物网络的二分模型,并展示了其在异质网络拓扑分析中的应用。提出了共表达模式与潜在分子机制之间的异质环和联系。