4.4 Article

Regulation and Evolution of Malonate and Propionate Catabolism in Proteobacteria

期刊

JOURNAL OF BACTERIOLOGY
卷 194, 期 12, 页码 3234-3240

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AMER SOC MICROBIOLOGY
DOI: 10.1128/JB.00163-12

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资金

  1. Russian Foundation of Basic Research [09-04-92745, 10-04-00431]
  2. Russian Academy of Sciences [14.740.11.0003, 07.514.11.4007]

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Bacteria catabolize malonate via two pathways, encoded by the mdc and mat genes. In various bacteria, transcription of these genes is controlled by the GntR family transcription factors (TFs) MatR/MdcY and/or the LysR family transcription factor MdcR. Propionate is metabolized via the methylcitrate pathway, comprising enzymes encoded by the pp and acn genes. PrpR, the Fis family sigma 54-dependent transcription factor, is known to be a transcriptional activator of the pap genes. Here, we report a detailed comparative genomic analysis of malonate and propionate metabolism and its regulation in proteobacteria. We characterize genomic loci and gene regulation and identify binding motifs for four new TFs and also new regulon members, in particular, tripartite ATP-independent periplasmic (TRAP) transporters. We describe restructuring of the genomic loci and regulatory interactions during the evolution of proteobacteria.

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