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对假单胞菌属中选定代谢酶的计算与实验相结合的分析

A combined computational-experimental analyses of selected metabolic enzymes in Pseudomonas species.

作者信息

Perumal Deepak, Lim Chu Sing, Chow Vincent T K, Sakharkar Kishore R, Sakharkar Meena K

机构信息

Advanced Design and Modeling Lab, Nanyang Technological University, Singapore.

出版信息

Int J Biol Sci. 2008 Sep 10;4(5):309-17. doi: 10.7150/ijbs.4.309.

Abstract

Comparative genomic analysis has revolutionized our ability to predict the metabolic subsystems that occur in newly sequenced genomes, and to explore the functional roles of the set of genes within each subsystem. These computational predictions can considerably reduce the volume of experimental studies required to assess basic metabolic properties of multiple bacterial species. However, experimental validations are still required to resolve the apparent inconsistencies in the predictions by multiple resources. Here, we present combined computational-experimental analyses on eight completely sequenced Pseudomonas species. Comparative pathway analyses reveal that several pathways within the Pseudomonas species show high plasticity and versatility. Potential bypasses in 11 metabolic pathways were identified. We further confirmed the presence of the enzyme O-acetyl homoserine (thiol) lyase (EC: 2.5.1.49) in P. syringae pv. tomato that revealed inconsistent annotations in KEGG and in the recently published SYSTOMONAS database. These analyses connect and integrate systematic data generation, computational data interpretation, and experimental validation and represent a synergistic and powerful means for conducting biological research.

摘要

比较基因组分析彻底改变了我们预测新测序基因组中发生的代谢子系统以及探索每个子系统内基因集功能作用的能力。这些计算预测可以大幅减少评估多种细菌物种基本代谢特性所需的实验研究数量。然而,仍需要进行实验验证来解决多种资源预测中明显的不一致性。在此,我们展示了对八个全基因组测序的假单胞菌物种的计算与实验相结合的分析。比较途径分析表明,假单胞菌物种中的几个途径具有高度的可塑性和通用性。在11条代谢途径中发现了潜在的旁路。我们进一步证实了丁香假单胞菌番茄致病变种中存在O-乙酰高丝氨酸(硫醇)裂合酶(EC:2.5.1.49),这一发现揭示了KEGG和最近发布的SYSTOMONAS数据库中注释不一致的情况。这些分析将系统数据生成、计算数据解释和实验验证联系并整合起来,代表了一种进行生物学研究的协同且强大的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5556/2536706/fc264c2994ce/ijbsv04p0309g01.jpg

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