Ozonolysis is a useful as well as dangerous reaction for performing alkene cleavage. On the other hand, enzymes are considered a more sustainable and safer alternative. Among them, Caulobacter segnis dioxygenase (CsO2) known so far for its ability to catalyze the coenzyme-free oxidation of vinylguaiacol into vanillin, was selected and its substrate scope evaluated towards diverse natural and synthetic stilbenoids. Under optimized conditions, CsO2 catalyzed the oxidative cleavage of the C=C double bonds of various trans-stilbenes, providing that a hydroxyl moiety was necessary in para-position of the phenyl group (e.g., resveratrol and its derivatives) for the reaction to take place, which was confirmed by modelling studies. The reactions occurred rapidly (0.5-3 h) with high conversions (95-99%) and without formation of by-products. The resveratrol biotransformation was carried out on 50-mL scale thus confirming the feasibility of the biocatalytic system as a preparative method.

Caulobacter segnis dioxygenase CsO2: a practical biocatalyst for stilbenoid ozonolysis / V. De Vitis, P. Cannazza, L. Mattio, D. Romano, A. Pinto, F. Molinari, T. Laurenzi, I. Eberini, M.L. Contente. - In: CHEMBIOCHEM. - ISSN 1439-4227. - 24:21(2023 Nov 02), pp. e202300477.1-e202300477.6. [10.1002/cbic.202300477]

Caulobacter segnis dioxygenase CsO2: a practical biocatalyst for stilbenoid ozonolysis

V. De Vitis
Primo
;
P. Cannazza
Secondo
;
L. Mattio;D. Romano;A. Pinto;F. Molinari;T. Laurenzi;I. Eberini
Penultimo
;
M.L. Contente
Ultimo
2023

Abstract

Ozonolysis is a useful as well as dangerous reaction for performing alkene cleavage. On the other hand, enzymes are considered a more sustainable and safer alternative. Among them, Caulobacter segnis dioxygenase (CsO2) known so far for its ability to catalyze the coenzyme-free oxidation of vinylguaiacol into vanillin, was selected and its substrate scope evaluated towards diverse natural and synthetic stilbenoids. Under optimized conditions, CsO2 catalyzed the oxidative cleavage of the C=C double bonds of various trans-stilbenes, providing that a hydroxyl moiety was necessary in para-position of the phenyl group (e.g., resveratrol and its derivatives) for the reaction to take place, which was confirmed by modelling studies. The reactions occurred rapidly (0.5-3 h) with high conversions (95-99%) and without formation of by-products. The resveratrol biotransformation was carried out on 50-mL scale thus confirming the feasibility of the biocatalytic system as a preparative method.
No
English
Alkene cleavage reaction; Caulobacter segnis dioxygenase; CsO2; Enzymatic ozonolysis-like reaction; Stilbenoids
Settore CHIM/11 - Chimica e Biotecnologia delle Fermentazioni
Settore CHIM/10 - Chimica degli Alimenti
Settore CHIM/06 - Chimica Organica
Settore BIO/10 - Biochimica
Articolo
Esperti anonimi
Ricerca applicata
Pubblicazione scientifica
Goal 13: Climate action
Goal 12: Responsible consumption and production
Goal 15: Life on land
Goal 6: Clean water and sanitation
Goal 8: Decent work and economic growth
Goal 9: Industry, Innovation, and Infrastructure
   Metal-containing Radical Enzymes (MetRaZymes)
   MetRaZymes
   EUROPEAN COMMISSION
   101073546

   PIANO DI SOSTEGNO ALLA RICERCA 2015-2017 - TRANSITION GRANT LINEA 1A PROGETTO "UNIMI PARTENARIATI H2020"

   Citrus waste recycling for added value products (CIRCLE)
   CIRCLE
   FONDAZIONE CARIPLO
   2020-1070
2-nov-2023
15-lug-2023
Wiley Blackwell Publishing
24
21
e202300477
1
6
6
Pubblicato
Periodico con rilevanza internazionale
pubmed
crossref
Aderisco
info:eu-repo/semantics/article
Caulobacter segnis dioxygenase CsO2: a practical biocatalyst for stilbenoid ozonolysis / V. De Vitis, P. Cannazza, L. Mattio, D. Romano, A. Pinto, F. Molinari, T. Laurenzi, I. Eberini, M.L. Contente. - In: CHEMBIOCHEM. - ISSN 1439-4227. - 24:21(2023 Nov 02), pp. e202300477.1-e202300477.6. [10.1002/cbic.202300477]
open
Prodotti della ricerca::01 - Articolo su periodico
9
262
Article (author)
Periodico con Impact Factor
V. De Vitis, P. Cannazza, L. Mattio, D. Romano, A. Pinto, F. Molinari, T. Laurenzi, I. Eberini, M.L. Contente
File in questo prodotto:
File Dimensione Formato  
ChemBioChem - 2023 - De Vitis.pdf

accesso aperto

Descrizione: online first
Tipologia: Publisher's version/PDF
Dimensione 2.17 MB
Formato Adobe PDF
2.17 MB Adobe PDF Visualizza/Apri
ChemBioChem - 2023 - De Vitis - Caulobacter segnis Dioxygenase CsO2 A Practical Biocatalyst for Stilbenoid Ozonolysis.pdf

accesso aperto

Tipologia: Publisher's version/PDF
Dimensione 2.14 MB
Formato Adobe PDF
2.14 MB Adobe PDF Visualizza/Apri
Pubblicazioni consigliate

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/997668
Citazioni
  • ???jsp.display-item.citation.pmc??? 0
  • Scopus 5
  • ???jsp.display-item.citation.isi??? 2
social impact