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首页> 外文期刊>Artificial intelligence in medicine >Bridge and brick network motifs: Identifying significant building blocks from complex biological systems
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Bridge and brick network motifs: Identifying significant building blocks from complex biological systems

机译:桥梁和砖块网络图案:从复杂的生物系统中识别出重要的构建基块

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Objective: A major focus in computational system biology research is defining organizing principles that govern complex biological network formation and evolution. The task is considered a major challenge because network behavior and function prediction requires the identification of functionally and statistically important motifs. Here we propose an algorithm for performing two tasks simultaneously: (a) detecting global statistical features and local connection structures in biological networks, and (b) locating functionally and statistically significant network motifs. Methods and material: Two gene regulation networks were tested: the bacteria Escherichia coli and the yeast eukaryote Saccharomyces cerevisiae. To understand their structural organizing principles and evolutionary mechanisms, we defined bridge motifs as composed of weak links only or of at least one weak link and multiple strong links, and defined brick motifs as composed of strong links only. Results: After examining functional and topological differences between bridge and brick motifs for predicting biological network behaviors and functions, we found that most genetic network motifs belong to the bridge category. This strongly suggests that the weak-tie links that provide unique paths for signal control significantly impact the signal processing function of transcription networks.rnConclusions: Bridge and brick motif content analysis can provide researchers with global and local views of individual real networks and help them locate functionally and topologically overlapping or isolated motifs for purposes of investigating biological system functions, behaviors, and similarities.
机译:目的:计算系统生物学研究的主要重点是定义管理复杂生物网络形成和演化的组织原理。这项任务被认为是一项重大挑战,因为网络行为和功能预测需要识别功能上和统计学上重要的主题。在这里,我们提出了一种用于同时执行两个任务的算法:(a)检测生物网络中的全局统计特征和局部连接结构,以及(b)定位具有功能和统计意义的重要网络图案。方法和材料:测试了两个基因调控网络:细菌大肠杆菌和酵母真核生物酿酒酵母。为了了解它们的结构组织原理和演化机理,我们将桥梁图案定义为仅由弱连接组成,或者至少由一个弱连接和多个强连接组成,而将砖模定义为仅由强连接组成。结果:在检查了桥梁和砖头图案之间的功能和拓扑差异以预测生物网络行为和功能之后,我们发现大多数遗传网络图案都属于桥梁类别。这有力地表明,为信号控制提供独特路径的弱连接会极大地影响转录网络的信号处理功能。rn结论:桥梁和砖块主题内容分析可以为研究人员提供单个真实网络的全局和局部视图,并帮助他们定位为了研究生物系统的功能,行为和相似性,在功能上和拓扑上重叠或孤立的主题。

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