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金属还原δ-变形菌中调控和代谢途径的重建

Reconstruction of regulatory and metabolic pathways in metal-reducing delta-proteobacteria.

作者信息

Rodionov Dmitry A, Dubchak Inna, Arkin Adam, Alm Eric, Gelfand Mikhail S

机构信息

Institute for Information Transmission Problems, Russian Academy of Sciences, Bolshoi Karetny per, 19, Moscow 127994, Russia.

出版信息

Genome Biol. 2004;5(11):R90. doi: 10.1186/gb-2004-5-11-r90. Epub 2004 Oct 22.

Abstract

BACKGROUND

Relatively little is known about the genetic basis for the unique physiology of metal-reducing genera in the delta subgroup of the proteobacteria. The recent availability of complete finished or draft-quality genome sequences for seven representatives allowed us to investigate the genetic and regulatory factors in a number of key pathways involved in the biosynthesis of building blocks and cofactors, metal-ion homeostasis, stress response, and energy metabolism using a combination of regulatory sequence detection and analysis of genomic context.

RESULTS

In the genomes of delta-proteobacteria, we identified candidate binding sites for four regulators of known specificity (BirA, CooA, HrcA, sigma-32), four types of metabolite-binding riboswitches (RFN-, THI-, B12-elements and S-box), and new binding sites for the FUR, ModE, NikR, PerR, and ZUR transcription factors, as well as for the previously uncharacterized factors HcpR and LysX. After reconstruction of the corresponding metabolic pathways and regulatory interactions, we identified possible functions for a large number of previously uncharacterized genes covering a wide range of cellular functions.

CONCLUSIONS

Phylogenetically diverse delta-proteobacteria appear to have homologous regulatory components. This study for the first time demonstrates the adaptability of the comparative genomic approach to de novo reconstruction of a regulatory network in a poorly studied taxonomic group of bacteria. Recent efforts in large-scale functional genomic characterization of Desulfovibrio species will provide a unique opportunity to test and expand our predictions.

摘要

背景

关于变形菌门δ亚群中金属还原菌独特生理学的遗传基础,我们了解得相对较少。最近,七个代表性菌株的完整完成或草图质量的基因组序列可供使用,这使我们能够结合调控序列检测和基因组背景分析,研究参与生物合成构件和辅因子、金属离子稳态、应激反应及能量代谢等多个关键途径中的遗传和调控因子。

结果

在δ-变形菌的基因组中,我们鉴定出了四种已知特异性调节因子(BirA、CooA、HrcA、sigma-32)的候选结合位点、四种代谢物结合核糖开关(RFN-、THI-、B12-元件和S-盒)以及FUR、ModE、NikR、PerR和ZUR转录因子的新结合位点,还有此前未鉴定的因子HcpR和LysX的结合位点。在重建相应的代谢途径和调控相互作用后,我们确定了大量此前未鉴定基因的可能功能,这些基因涵盖了广泛的细胞功能。

结论

系统发育上多样的δ-变形菌似乎具有同源调控成分。本研究首次证明了比较基因组学方法在对研究较少的细菌分类群中从头重建调控网络方面的适用性。最近在脱硫弧菌物种大规模功能基因组表征方面所做的努力将为检验和扩展我们的预测提供独特机会。

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