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Design of peptide-containing N5-unmodified neutral flavins that catalyze aerobic oxygenations

Authors :
Masami Tanaka
Shinichi Itsuno
Hazuki Kita
Keiji Minagawa
Ken Yamanomoto
Naoki Haraguchi
Yasushi Imada
Yukihiro Arakawa
Source :
Chemical Science. 8(8):5468-5475
Publication Year :
2017
Publisher :
The Royal Society of Chemistry, 2017.

Abstract

Simulation of the monooxygenation function of flavoenzyme (Fl-Enz) has been long-studied with N5-modified cationic flavins (FlEt+), but never with N5-unmodified neutral flavins (Fl) despite the fact that Fl is genuinely equal to the active center of Fl-Enz. This is because of the greater lability of 4a-hydroperoxy adduct of Fl, FlOOH, compared to those of FlEt+, FlEtOOH, and Fl-Enz, FlOOH-Enz. In this study, Fl incorporated into a short peptide, flavopeptide (Fl-Pep), was designed by a rational top-down approach using a computational method, which could stabilize the corresponding 4a-hydroperoxy adduct (FlOOH-Pep) through intramolecular hydrogen bonds. We report catalytic chemoselective sulfoxidation as well as Baeyer–Villiger oxidation by means of Fl-Pep under light-shielding and aerobic conditions, which are the first Fl-Enz-mimetic aerobic oxygenation reactions catalyzed by Fl under non-enzymatic conditions.

Details

Language :
English
ISSN :
20416539
Volume :
8
Issue :
8
Database :
OpenAIRE
Journal :
Chemical Science
Accession number :
edsair.doi.dedup.....ed267c567283cbc30e87d0de0937214f