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Unraveling the specific regulation of the central pathway for anaerobic degradation of 3-methylbenzoate.


ABSTRACT: The mbd cluster encodes the anaerobic degradation of 3-methylbenzoate in the ?-proteobacterium Azoarcus sp. CIB. The specific transcriptional regulation circuit that controls the expression of the mbd genes was investigated. The PO, PB 1, and P3 R promoters responsible for the expression of the mbd genes, their cognate MbdR transcriptional repressor, as well as the MbdR operator regions (ATACN10GTAT) have been characterized. The three-dimensional structure of MbdR has been solved revealing a conformation similar to that of other TetR family transcriptional regulators. The first intermediate of the catabolic pathway, i.e. 3-methylbenzoyl-CoA, was shown to act as the inducer molecule. An additional MbdR-dependent promoter, PA, which contributes to the expression of the CoA ligase that activates 3-methylbenzoate to 3-methylbenzoyl-CoA, was shown to be necessary for an efficient induction of the mbd genes. Our results suggest that the mbd cluster recruited a regulatory system based on the MbdR regulator and its target promoters to evolve a distinct central catabolic pathway that is only expressed for the anaerobic degradation of aromatic compounds that generate 3-methylbenzoyl-CoA as the central metabolite. All these results highlight the importance of the regulatory systems in the evolution and adaptation of bacteria to the anaerobic degradation of aromatic compounds.

SUBMITTER: Juarez JF 

PROVIDER: S-EPMC4424350 | biostudies-literature | 2015 May

REPOSITORIES: biostudies-literature

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Unraveling the specific regulation of the central pathway for anaerobic degradation of 3-methylbenzoate.

Juárez Javier F JF   Liu Huixiang H   Zamarro María T MT   McMahon Stephen S   Liu Huanting H   Naismith James H JH   Eberlein Christian C   Boll Matthias M   Carmona Manuel M   Díaz Eduardo E  

The Journal of biological chemistry 20150320 19


The mbd cluster encodes the anaerobic degradation of 3-methylbenzoate in the β-proteobacterium Azoarcus sp. CIB. The specific transcriptional regulation circuit that controls the expression of the mbd genes was investigated. The PO, PB 1, and P3 R promoters responsible for the expression of the mbd genes, their cognate MbdR transcriptional repressor, as well as the MbdR operator regions (ATACN10GTAT) have been characterized. The three-dimensional structure of MbdR has been solved revealing a con  ...[more]

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