Issue 21, 2022, Issue in Progress

Oxidative dehalogenation of trichlorophenol catalyzed by a promiscuous artificial heme-enzyme

Abstract

The miniaturized metalloenzyme Fe(III)-mimochrome VI*a (Fe(III)-MC6*a) acts as an excellent biocatalyst in the H2O2-mediated oxidative dehalogenation of the well-known pesticide and biocide 2,4,6-trichlorophenol (TCP). The artificial enzyme can oxidize TCP with a catalytic efficiency (kcat/KTCPm = 150 000 mM−1 s−1) up to 1500-fold higher than the most active natural metalloenzyme horseradish peroxidase (HRP). UV-visible and EPR spectroscopies were used to provide indications of the catalytic mechanism. One equivalent of H2O2 fully converts Fe(III)-MC6*a into the oxoferryl-porphyrin radical cation intermediate [(Fe(IV)[double bond, length as m-dash]O)por˙+], similarly to peroxidase compound I (Cpd I). Addition of TCP to Cpd I rapidly leads to the formation of the corresponding quinone, while Cpd I decays back to the ferric resting state in the absence of substrate. EPR data suggest a catalytic mechanism involving two consecutive one-electron reactions. All results highlight the value of the miniaturization strategy for the development of chemically stable, highly efficient artificial metalloenzymes as powerful catalysts for the oxidative degradation of toxic pollutants.

Graphical abstract: Oxidative dehalogenation of trichlorophenol catalyzed by a promiscuous artificial heme-enzyme

Supplementary files

Article information

Article type
Paper
Submitted
07 Feb 2022
Accepted
13 Apr 2022
First published
04 May 2022
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2022,12, 12947-12956

Oxidative dehalogenation of trichlorophenol catalyzed by a promiscuous artificial heme-enzyme

G. Zambrano, A. Sekretareva, D. D'Alonzo, L. Leone, V. Pavone, A. Lombardi and F. Nastri, RSC Adv., 2022, 12, 12947 DOI: 10.1039/D2RA00811D

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