Literature DB >> 28752942

Phthaloyl-coenzyme A decarboxylase from Thauera chlorobenzoica: the prenylated flavin-, K+ - and Fe2+ -dependent key enzyme of anaerobic phthalate degradation.

Mario Mergelsberg1, Max Willistein1, Heike Meyer1, Hans-Joachim Stärk2, Dominique F Bechtel3, Antonio J Pierik3, Matthias Boll1.   

Abstract

The degradation of the industrially produced and environmentally relevant phthalate esters by microorganisms is initiated by the hydrolysis to alcohols and phthalate (1,2-dicarboxybenzene). In the absence of oxygen the further degradation of phthalate proceeds via activation to phthaloyl-CoA followed by decarboxylation to benzoyl-CoA. Here, we report on the first purification and characterization of a phthaloyl-CoA decarboxylase (PCD) from the denitrifying Thauera chlorobenzoica. Hexameric PCD belongs to the UbiD-family of (de)carboxylases and contains prenylated FMN (prFMN), K+ and, unlike other UbiD-like enzymes, Fe2+ as cofactors. The latter is suggested to be involved in oxygen-independent electron-transfer during oxidative prFMN maturation. Either oxidation to the Fe3+ -state in air or removal of K+ by desalting resulted in >92% loss of both, prFMN and decarboxylation activity suggesting the presence of an active site prFMN/Fe2+ /K+ -complex in PCD. The PCD-catalysed reaction was essentially irreversible: neither carboxylation of benzoyl-CoA in the presence of 2 M bicarbonate, nor an isotope exchange of phthaloyl-CoA with 13 C-bicarbonate was observed. PCD differs in many aspects from prFMN-containing UbiD-like decarboxylases and serves as a biochemically accessible model for the large number of UbiD-like (de)carboxylases that play key roles in the anaerobic degradation of environmentally relevant aromatic pollutants.
© 2017 Society for Applied Microbiology and John Wiley & Sons Ltd.

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Year:  2017        PMID: 28752942     DOI: 10.1111/1462-2920.13875

Source DB:  PubMed          Journal:  Environ Microbiol        ISSN: 1462-2912            Impact factor:   5.491


  5 in total

1.  An Aerobic Hybrid Phthalate Degradation Pathway via Phthaloyl-Coenzyme A in Denitrifying Bacteria.

Authors:  Christa Ebenau-Jehle; Christina I S L Soon; Jonathan Fuchs; Robin Geiger; Matthias Boll
Journal:  Appl Environ Microbiol       Date:  2020-05-19       Impact factor: 4.792

2.  Four Molybdenum-Dependent Steroid C-25 Hydroxylases: Heterologous Overproduction, Role in Steroid Degradation, and Application for 25-Hydroxyvitamin D3 Synthesis.

Authors:  Christian Jacoby; Jens Eipper; Markus Warnke; Oliver Tiedt; Mario Mergelsberg; Hans-Joachim Stärk; Birgit Daus; Zaira Martín-Moldes; María Teresa Zamarro; Eduardo Díaz; Matthias Boll
Journal:  MBio       Date:  2018-06-19       Impact factor: 7.867

3.  Toolbox for the structure-guided evolution of ferulic acid decarboxylase (FDC).

Authors:  Horia Duță; Alina Filip; Levente Csaba Nagy; Emma Zsófia Aletta Nagy; Róbert Tőtős; László Csaba Bencze
Journal:  Sci Rep       Date:  2022-03-01       Impact factor: 4.379

4.  Isophthalate:coenzyme A ligase initiates anaerobic degradation of xenobiotic isophthalate.

Authors:  Madan Junghare; Jasmin Frey; Khalid M Naji; Dieter Spiteller; Gustav Vaaje-Kolstad; Bernhard Schink
Journal:  BMC Microbiol       Date:  2022-09-28       Impact factor: 4.465

5.  Anaerobic degradation of xenobiotic isophthalate by the fermenting bacterium Syntrophorhabdus aromaticivorans.

Authors:  Madan Junghare; Dieter Spiteller; Bernhard Schink
Journal:  ISME J       Date:  2019-01-15       Impact factor: 10.302

  5 in total

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