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Applying automatically derived gene-groups to automatically predict and refine metabolic pathways

机译:应用自动衍生的基因组自动预测和完善代谢途径

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This paper describes an automated technique to predict integrated pathways and refine existing metabolic pathways using the information of automatically derived, functionally similar gene-groups and orthologs (functionally equivalent genes) derived by the comparison of complete microbial genomes archived in GenBank. The described method integrates automatically derived orthologous and homologous gene-groups (http://www.mcs.kent.edu//spl sim/arvind/orthos.html) with the biochemical pathway template available at the KEGG database (http://www.genome.ad.jp), the enzyme information derived from the SwissProt enzyme database (http:// expasys.hcuge.ch/), and the Ligand database (http://www.genome.ad.jp). The technique refines existing pathways (based upon the network of reactions of enzymes) by associating corresponding nonenzymatic and regulatory proteins to enzymes and operons and by identifying substituting homologs. The technique is suitable for building and refining integrated pathways using evolutionary diverse organisms. A methodology and the corresponding algorithm are presented. The technique is illustrated by comparing the genomes of E coli and B. subtilis with M. tuberculosis. The findings about integrated pathways are briefly discussed.
机译:本文介绍了一种自动技术,该技术可利用自动来源的,功能相似的基因组和直系同源基因(功能相当的基因)的信息来预测整合途径并完善现有的代谢途径,这些信息来自基因库中完整的微生物基因组的比较。所述方法将自动衍生的直系同源和同源基因组(http://www.mcs.kent.edu//spl sim / arvind / orthos.html)与可从KEGG数据库(http:// (www.genome.ad.jp),源自SwissProt酶数据库(http://expasys.hcuge.ch/)和配体数据库(http://www.genome.ad.jp)的酶信息。该技术通过将相应的非酶和调节蛋白与酶和操纵子相关联,并鉴定出同系物来完善现有途径(基于酶的反应网络)。该技术适用于使用进化多样的生物体建立和完善整合途径。介绍了一种方法和相应的算法。通过比较大肠杆菌和枯草芽孢杆菌与结核分枝杆菌的基因组来说明该技术。简要讨论了有关整合途径的发现。

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