Nikoloski Zoran, Grimbs Sergio, May Patrick, Selbig Joachim
Institute of Biochemistry and Biology, University of Potsdam, Karl-Liebknecht-Str. 24-25, Haus 20, 14476 Potsdam, Germany.
J Theor Biol. 2008 Oct 21;254(4):807-16. doi: 10.1016/j.jtbi.2008.07.015. Epub 2008 Jul 22.
High-throughput data from various omics and sequencing techniques have rendered the automated metabolic network reconstruction a highly relevant problem. Our approach reflects the inherent probabilistic nature of the steps involved in metabolic network reconstruction. Here, the goal is to arrive at networks which combine probabilistic information with the possibility to obtain a small number of disconnected network constituents by reduction of a given preliminary probabilistic metabolic network. We define automated metabolic network reconstruction as an optimization problem on four-partite graph (nodes representing genes, enzymes, reactions, and metabolites) which integrates: (1) probabilistic information obtained from the existing process for metabolic reconstruction from a given genome, (2) connectedness of the raw metabolic network, and (3) clustering of components in the reconstructed metabolic network. The practical implications of our theoretical analysis refer to the quality of reconstructed metabolic networks and shed light on the problem of finding more efficient and effective methods for automated reconstruction. Our main contributions include: a completeness result for the defined problem, polynomial-time approximation algorithm, and an optimal polynomial-time algorithm for trees. Moreover, we exemplify our approach by the reconstruction of the sucrose biosynthesis pathway in Chlamydomonas reinhardtii.
来自各种组学和测序技术的高通量数据使自动化代谢网络重建成为一个高度相关的问题。我们的方法反映了代谢网络重建中各个步骤固有的概率性质。这里的目标是得到这样的网络,它将概率信息与通过简化给定的初步概率代谢网络来获得少量不相连的网络成分的可能性相结合。我们将自动化代谢网络重建定义为一个关于四部分图(节点代表基因、酶、反应和代谢物)的优化问题,该问题整合了:(1)从给定基因组进行代谢重建的现有过程中获得的概率信息,(2)原始代谢网络的连通性,以及(3)重建代谢网络中成分的聚类。我们理论分析的实际意义涉及重建代谢网络的质量,并为寻找更高效有效的自动化重建方法这一问题提供了启示。我们的主要贡献包括:所定义问题的完备性结果、多项式时间近似算法以及针对树的最优多项式时间算法。此外,我们通过莱茵衣藻蔗糖生物合成途径的重建来举例说明我们的方法。