Novel metabolic pathway of arylethers by cytochrome P450: cleavage of the oxygen-aromatic ring bond accompanying ipso-substitution by the oxygen atom of the active species in cytochrome P450 models and cytochrome P450

Arch Biochem Biophys. 1994 May 1;310(2):402-9. doi: 10.1006/abbi.1994.1185.

Abstract

We have found a novel metabolic pathway of arylethers, involving the cleavage of the oxygen-aromatic ring bond. When p-(p-nitrophenoxy)phenol was utilized as a substrate, cleaved products, p-nitrophenol and p-benzoquinone, were formed in two cytochrome P450 model systems, meso-tetraphenylporphinatoiron(III) chloride-NaBH4/O2 system and meso-tetrakis (2,6-difluorophenyl)porphinatoiron(III) chloride-m-chloroperoxybenzoic acid (mCPBA) system. Rat liver microsomes also catalyzed this reaction, which was inhibited by a cytochrome P450-specific inhibitor, and it was confirmed that this cleavage proceeded in vivo. Further, experiments using [18O]mCPBA and 18O2 proved that the cleavage reaction is accompanied with the ipso-substitution by the oxygen atom of the active species in both cytochrome P450 model system and cytochrome P450. When the microsomal reactions of p-(p-nitrophenoxy)phenol analogues which lack a hydroxy group, namely p-nitrophenoxybenzene, p-(p-nitrophenoxy)anisole, and p-(p-nitrophenoxy)toluene, were investigated, the cleavage reaction occurred via p-(p-nitrophenoxy)phenol in the cases of p-nitrophenoxybenzene and p-(p-nitrophenoxy)anisole, indicating that a hydroxy group at the p-position to the ether bond is necessary for this pathway. This metabolic pathway appears to be important, because a diarylether linkage, which is very stable and has generally been thought to resist metabolism, is cleaved and benzoquinone, a highly toxic metabolite, is formed.

Publication types

  • Comparative Study

MeSH terms

  • Animals
  • Cytochrome P-450 Enzyme System / metabolism*
  • Indicators and Reagents
  • Kinetics
  • Male
  • Microsomes, Liver / enzymology
  • Molecular Structure
  • Nitrophenols / metabolism*
  • Oxygen Isotopes
  • Phenyl Ethers / metabolism*
  • Rats
  • Rats, Wistar
  • Substrate Specificity

Substances

  • Indicators and Reagents
  • Nitrophenols
  • Oxygen Isotopes
  • Phenyl Ethers
  • 4-(4-nitrophenoxy)phenol
  • Cytochrome P-450 Enzyme System