[HTML][HTML] Enzymatic site-selectivity enabled by structure-guided directed evolution

J Wang, G Li, MT Reetz - Chemical Communications, 2017 - pubs.rsc.org
Biocatalytic site-selective (regioselective) organic transformations have been practiced for
decades, but the traditional limitations of enzymes regarding narrow substrate acceptance …

Intramolecular C (sp³)–H Bond Amination Strategies for the Synthesis of Saturated N-containing Heterocycles

J Zhang, MH Pérez-Temprano - Chimia, 2020 - ojs.chimia.ch
The selective functionalization of C (sp 3)–H bonds via intramolecular amination reactions
represents a very attractive strategy for the construction of saturated N-containing …

C− H Amination via Nitrene Transfer Catalyzed by Mononuclear Non‐Heme Iron‐Dependent Enzymes

MA Vila, V Steck, S Rodriguez Giordano… - …, 2020 - Wiley Online Library
Expanding the reaction scope of natural metalloenzymes can provide new opportunities for
biocatalysis. Mononuclear non‐heme iron‐dependent enzymes represent a large class of …

Synthesis of imidazolidin-4-ones via a cytochrome P450-catalyzed intramolecular C–H amination

X Ren, JA O'Hanlon, M Morris, J Robertson… - Acs …, 2016 - ACS Publications
Expanding Nature's catalytic repertoire to include reactions important in synthetic chemistry
opens new opportunities for biocatalysis. An intramolecular C–H amination route to …

Increasing the Activity and Efficiency of Stereoselective Oxidations by using Decoy Molecules in Combination with Rate‐Enhancing Variants of P450Bm3

SD Munday, S Dezvarei, SG Bell - ChemCatChem, 2016 - Wiley Online Library
The use of rate‐accelerating variants of P450Bm3 coupled with decoy molecules is
described, resulting in improved catalytic activity for hydroxylation and epoxidation …