Doorgaan naar hoofdnavigatie Doorgaan naar zoeken Ga verder naar hoofdinhoud

Isotope fractionation associated with the biodegradation of 2- and 4-nitrophenols via monooxygenation pathways

Reto S Wijker, Zohre Kurt, Jim C Spain, Jakov Bolotin, Josef Zeyer, Thomas B Hofstetter

Onderzoeksoutput: ArticleAcademicpeer review

Samenvatting

Monooxygenation is an important route of nitroaromatic compound (NAC) biodegradation and it is widely found for cometabolic transformations of NACs and other aromatic pollutants. We investigated the C and N isotope fractionation of nitrophenol monooxygenation to complement the characterization of NAC (bio)degradation pathways by compound-specific isotope analysis (CSIA). Because of the large diversity of enzymes catalyzing monooxygenations, we studied the combined C and N isotope fractionation and the corresponding 13C- and 15N-apparent kinetic isotope effects (AKIEs) of four nitrophenol-biodegrading microorganisms (Bacillus spharericus JS905, Pseudomonas sp. 1A, Arthrobacter sp. JS443, Pseudomonas putida B2) in the pH range 6.1-8.6 with resting cells and crude cell extracts. While the extent of C and N isotope fractionation and the AKIE-values varied considerably for the different organisms, the correlated C and N isotope signatures (δ15N vs δ13C) revealed trends, indicative of two distinct monooxygenation pathways involving hydroxy-1,4-benzoquinone or 1,2- and 1,4-benzoquinone intermediates, respectively. The distinction was possible based on larger secondary 15N-AKIEs associated with the benzoquinone pathway. Isotope fractionation was neither masked substantially by nitrophenol speciation nor transport across cell membranes. Only when 4-nitrophenol was biodegraded by Pseudomonas sp. 1A did isotope fractionation become negligible, presumably due to rate-limiting substrate binding steps pertinent to the catalytic cycle of flavin-dependent monooxygenases. © 2013 American Chemical Society.
Originele taal-2English
Pagina's (van-tot)14185-14193
Aantal pagina's9
TijdschriftEnvironmental science & technology
Volume47
Nummer van het tijdschrift24
DOI's
StatusPublished - 22 nov. 2013
Extern gepubliceerdJa

Keywords

  • arthrobacter/metabolisme
  • bacil/metabolisme
  • benzochinonen/chemie
  • biokatalyse
  • biologische afbraak, milieu
  • koolstof-isotopen
  • chemische fractionering
  • milieuverontreinigende stoffen/analyse
  • kinetiek
  • metabolische netwerken en routes
  • oxygenasen met gemengde functie/metabolisme
  • stikstof-isotopen
  • nitrofenolen/chemie
  • pseudomonas putida/metabolisme

Vingerafdruk

Duik in de onderzoeksthema's van 'Isotope fractionation associated with the biodegradation of 2- and 4-nitrophenols via monooxygenation pathways'. Samen vormen ze een unieke vingerafdruk.

Citeer dit