Literature DB >> 21849503

Control of proteobacterial central carbon metabolism by the HexR transcriptional regulator: a case study in Shewanella oneidensis.

Semen A Leyn1, Xiaoqing Li, Qingxiang Zheng, Pavel S Novichkov, Samantha Reed, Margaret F Romine, James K Fredrickson, Chen Yang, Andrei L Osterman, Dmitry A Rodionov.   

Abstract

Bacteria exploit multiple mechanisms for controlling central carbon metabolism (CCM). Thus, a bioinformatic analysis together with some experimental data implicated the HexR transcriptional factor as a global CCM regulator in some lineages of Gammaproteobacteria operating as a functional replacement of the Cra regulator characteristic of Enterobacteriales. In this study, we combined a large scale comparative genomic reconstruction of HexR-controlled regulons in 87 species of Proteobacteria with the detailed experimental analysis of the HexR regulatory network in the Shewanella oneidensis model system. Although nearly all of the HexR-controlled genes are associated with CCM, remarkable variations were revealed in the scale (from 1 to 2 target operons in Enterobacteriales up to 20 operons in Aeromonadales) and gene content of HexR regulons between 11 compared lineages. A predicted 17-bp pseudo-palindrome with a consensus tTGTAATwwwATTACa was confirmed as a HexR-binding motif for 15 target operons (comprising 30 genes) by in vitro binding assays. The negative effect of the key CCM intermediate, 2-keto-3-deoxy-6-phosphogluconate, on the DNA-regulator complex formation was verified. A dual mode of HexR action on various target promoters, repression of genes involved in catabolic pathways and activation of gluconeogenic genes, was for the first time predicted by the bioinformatic analysis and experimentally verified by changed gene expression pattern in S. oneidensis ΔhexR mutant. Phenotypic profiling revealed the inability of this mutant to grow on lactate or pyruvate as a single carbon source. A comparative metabolic flux analysis of wild-type and mutant strains of S. oneidensis using [(13)C]lactate labeling and GC-MS analysis confirmed the hypothesized HexR role as a master regulator of gluconeogenic flux from pyruvate via the transcriptional activation of phosphoenolpyruvate synthase (PpsA).

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Year:  2011        PMID: 21849503      PMCID: PMC3195618          DOI: 10.1074/jbc.M111.267963

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  42 in total

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2.  RegPrecise: a database of curated genomic inferences of transcriptional regulatory interactions in prokaryotes.

Authors:  Pavel S Novichkov; Olga N Laikova; Elena S Novichkova; Mikhail S Gelfand; Adam P Arkin; Inna Dubchak; Dmitry A Rodionov
Journal:  Nucleic Acids Res       Date:  2009-11-01       Impact factor: 16.971

3.  Dual regulation of zwf-1 by both 2-keto-3-deoxy-6-phosphogluconate and oxidative stress in Pseudomonas putida.

Authors:  Juhyun Kim; Che Ok Jeon; Woojun Park
Journal:  Microbiology       Date:  2008-12       Impact factor: 2.777

4.  Regulation of glucose metabolism in Pseudomonas: the phosphorylative branch and entner-doudoroff enzymes are regulated by a repressor containing a sugar isomerase domain.

Authors:  Abdelali Daddaoua; Tino Krell; Juan-Luis Ramos
Journal:  J Biol Chem       Date:  2009-06-08       Impact factor: 5.157

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Authors:  Tina Jaeger; Christoph Mayer
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7.  Genomic reconstruction of Shewanella oneidensis MR-1 metabolism reveals a previously uncharacterized machinery for lactate utilization.

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8.  GenBank.

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9.  MicrobesOnline: an integrated portal for comparative and functional genomics.

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10.  Transcriptional regulation of NAD metabolism in bacteria: NrtR family of Nudix-related regulators.

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Authors:  Dmitry A Ravcheev; Xiaoqing Li; Haythem Latif; Karsten Zengler; Semen A Leyn; Yuri D Korostelev; Alexey E Kazakov; Pavel S Novichkov; Andrei L Osterman; Dmitry A Rodionov
Journal:  J Bacteriol       Date:  2011-12-30       Impact factor: 3.490

2.  HexR Controls Glucose-Responsive Genes and Central Carbon Metabolism in Neisseria meningitidis.

Authors:  Ana Antunes; Giacomo Golfieri; Francesca Ferlicca; Marzia M Giuliani; Vincenzo Scarlato; Isabel Delany
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3.  Genomic reconstruction of the transcriptional regulatory network in Bacillus subtilis.

Authors:  Semen A Leyn; Marat D Kazanov; Natalia V Sernova; Ekaterina O Ermakova; Pavel S Novichkov; Dmitry A Rodionov
Journal:  J Bacteriol       Date:  2013-03-15       Impact factor: 3.490

4.  RegPrecise web services interface: programmatic access to the transcriptional regulatory interactions in bacteria reconstructed by comparative genomics.

Authors:  Pavel S Novichkov; Thomas S Brettin; Elena S Novichkova; Paramvir S Dehal; Adam P Arkin; Inna Dubchak; Dmitry A Rodionov
Journal:  Nucleic Acids Res       Date:  2012-06-14       Impact factor: 16.971

5.  An integrated approach to reconstructing genome-scale transcriptional regulatory networks.

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6.  CceR and AkgR regulate central carbon and energy metabolism in alphaproteobacteria.

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7.  Global transcriptome analysis reveals small RNAs affecting Neisseria meningitidis bacteremia.

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Review 8.  Data-driven integration of genome-scale regulatory and metabolic network models.

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9.  Novel Functions and Regulation of Cryptic Cellobiose Operons in Escherichia coli.

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10.  Functional diversification of ROK-family transcriptional regulators of sugar catabolism in the Thermotogae phylum.

Authors:  Marat D Kazanov; Xiaoqing Li; Mikhail S Gelfand; Andrei L Osterman; Dmitry A Rodionov
Journal:  Nucleic Acids Res       Date:  2012-12-02       Impact factor: 16.971

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