Kurata Hiroyuki, Inoue Kentaro, Maeda Kazuhiro, Masaki Koichi, Shimokawa Yuki, Zhao Quanyu
Department of Bioscience and Bioinformatics, Kyushu Institute of Technology, Iizuka, 820-8502, Fukuoka, Japan.
Nucleic Acids Res. 2007;35(20):e134. doi: 10.1093/nar/gkm769. Epub 2007 Oct 16.
Biochemical network maps are helpful for understanding the mechanism of how a collection of biochemical reactions generate particular functions within a cell. We developed a new and computationally feasible notation that enables drawing a wide resolution map from the domain-level reactions to phenomenological events and implemented it as the extended GUI network constructor of CADLIVE (Computer-Aided Design of LIVing systEms). The new notation presents 'Domain expansion' for proteins and RNAs, 'Virtual reaction and nodes' that are responsible for illustrating domain-based interaction and 'InnerLink' that links real complex nodes to virtual nodes to illustrate the exact components of the real complex. A modular box is also presented that packs related reactions as a module or a subnetwork, which gives CADLIVE a capability to draw biochemical maps in a hierarchical modular architecture. Furthermore, we developed a pathway search module for virtual knockout mutants as a built-in application of CADLIVE. This module analyzes gene function in the same way as molecular genetics, which simulates a change in mutant phenotypes or confirms the validity of the network map. The extended CADLIVE with the newly proposed notation is demonstrated to be feasible for computational simulation and analysis.
生化网络图有助于理解一系列生化反应如何在细胞内产生特定功能的机制。我们开发了一种新的且在计算上可行的表示法,它能够绘制从领域级反应到现象学事件的宽分辨率图谱,并将其实现为CADLIVE(生命系统计算机辅助设计)的扩展图形用户界面网络构建器。新的表示法提出了蛋白质和RNA的“结构域扩展”、负责说明基于结构域相互作用的“虚拟反应和节点”以及将真实复合体节点与虚拟节点相连以说明真实复合体确切组成部分的“内部链接”。还提出了一个模块化框,它将相关反应打包为一个模块或子网络,这使CADLIVE能够以分层模块化架构绘制生化图谱。此外,我们开发了一个针对虚拟敲除突变体的通路搜索模块,作为CADLIVE的一个内置应用程序。该模块以与分子遗传学相同的方式分析基因功能,模拟突变体表型的变化或确认网络图的有效性。事实证明,具有新提出表示法的扩展CADLIVE对于计算模拟和分析是可行的。