首页> 外文会议>2013 Seventh International Conference on Complex, Intelligent, and Software Intensive Systems >Discovering Feedback and Coupled Feedback Loops in KEGG Pathways through Cross-Map Identification
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Discovering Feedback and Coupled Feedback Loops in KEGG Pathways through Cross-Map Identification

机译:通过跨地图识别发现KEGG通路中的反馈和耦合反馈环

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Each gene regulatory network (GRN) involves a set of DNA components and indirectly interacts each other to control gene expression rates. Especially, some sub-networks appear in a GRN holding feedback loop or coupled feedback loop mechanisms, which possess specific relationships and aim to maintain certain functional conditions. Many cases have been reported and experimentally verified the existence of feedback and coupled feedback loops in transcription regulatory networks. However, most feedback loops were not shown directly from the pathways reported by KEGG database. In this study, we integrated all possible cross-regulatory pathways within KEGG maps through examining the feedback relationship among all genes. A total of 427 biological pathway maps were verified individually and an on-line web based system was designed for identifying a specified gene for its possible feedback relationship. In addition, paralogous gene information was also considered for discovering potential coupled feedback loop relationships. There are 50 newly identified feedback loops and 124 coupled feedback loops were found in this study, of which 48 (96%) feedback loops were constructed from different KEGG maps. The built cross-linked pathways could facilitate biologists in understanding how the unveiled dynamic patterns of gene regulation maintain the balance of a specific biological function.
机译:每个基因调控网络(GRN)都涉及一组DNA成分,并且彼此间接相互作用以控制基因表达速率。特别是,某些子网出现在GRN保持反馈环路或耦合反馈环路机制中,它们具有特定的关系并旨在维持某些功能条件。已经报道了许多情况,并通过实验验证了转录调节网络中反馈和耦合反馈环的存在。但是,大多数反馈回路并未直接从KEGG数据库报告的途径中显示出来。在这项研究中,我们通过检查所有基因之间的反馈关系,将所有可能的交叉调节途径整合到了KEGG图中。总共对427条生物途径图进行了验证,并设计了一个基于网络的在线系统来识别特定基因的可能反馈关系。另外,还考虑了旁系基因信息以发现潜在的耦合反馈环关系。在这项研究中,发现了50个新发现的反馈回路,并找到了124个耦合反馈回路,其中48个(96%)反馈回路是从不同的KEGG映射中构建的。建立的交联途径可以帮助生物学家了解基因调控的新动态模式如何维持特定生物学功能的平衡。

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