Artificial metalloenzymes: reaction scope and optimization strategies

F Schwizer, Y Okamoto, T Heinisch, Y Gu… - Chemical …, 2018 - ACS Publications
The incorporation of a synthetic, catalytically competent metallocofactor into a protein
scaffold to generate an artificial metalloenzyme (ArM) has been explored since the late …

Supramolecular catalysis. Part 2: artificial enzyme mimics

M Raynal, P Ballester, A Vidal-Ferran… - Chemical Society …, 2014 - pubs.rsc.org
The design of artificial catalysts able to compete with the catalytic proficiency of enzymes is
an intense subject of research. Non-covalent interactions are thought to be involved in …

Bioinspired catalyst design and artificial metalloenzymes

PJ Deuss, R den Heeten, W Laan… - … –A European Journal, 2011 - Wiley Online Library
Many bioinspired transition‐metal catalysts have been developed over the recent years. In
this review the progress in the design and application of ligand systems based on peptides …

Automated and Continuous-Flow Platform to Analyze Semiconductor–Metal Complex Hybrid Systems for Photocatalytic CO2 Reduction

CD Sahm, GM Ucoski, S Roy, E Reisner - ACS Catalysis, 2021 - ACS Publications
Sunlight-driven CO2 reduction is increasingly considered as a promising approach to
contribute toward a carbon-neutral fuel cycle, but most photocatalyst systems are currently …

Artificial metalloenzyme design with unnatural amino acids and non-native cofactors

Y Yu, C Hu, L Xia, J Wang - ACS Catalysis, 2018 - ACS Publications
There are 20 proteinogenic amino acids and a limited number of cofactors naturally
available to build enzymes. Genetic codon expansion enables us to incorporate more than …

Manganese Transfer Hydrogenases Based on the Biotin‐Streptavidin Technology

W Wang, R Tachibana, Z Zou, D Chen… - Angewandte …, 2023 - Wiley Online Library
Artificial (transfer) hydrogenases have been developed for organic synthesis, but they rely
on precious metals. Native hydrogenases use Earth‐abundant metals, but these cannot be …

Oxidation catalysis by iron and manganese porphyrins within enzyme‐like cages

M Chino, L Leone, G Zambrano, F Pirro… - …, 2018 - Wiley Online Library
Inspired by natural heme‐proteins, scientists have attempted for decades to design efficient
and selective metalloporphyrin‐based oxidation catalysts. Starting from the pioneering work …

Coordination complexes and biomolecules: A wise wedding for catalysis upgrade

M Hoarau, C Hureau, E Gras, P Faller - Coordination Chemistry Reviews, 2016 - Elsevier
Artificial metalloenzymes, with their high selectivity and specificity combined with a wide
scope of reactivity and substrates, constitute an original approach for catalyst development …

From “hemoabzymes” to “hemozymes”: towards new biocatalysts for selective oxidations

JP Mahy, JD Maréchal, R Ricoux - Chemical Communications, 2015 - pubs.rsc.org
The design of artificial hemoproteins that could catalyze selective oxidations using clean
oxidants such as O2 or H2O2 under ecocompatible conditions constitutes a real challenge …

Bovine serum albumin–cobalt (II) Schiff base complex hybrid: an efficient artificial metalloenzyme for enantioselective sulfoxidation using hydrogen peroxide

J Tang, F Huang, Y Wei, H Bian, W Zhang… - Dalton Transactions, 2016 - pubs.rsc.org
An artificial metalloenzyme (BSA–CoL) based on the incorporation of a cobalt (II) Schiff base
complex {CoL, H2L= 2, 2′-[(1, 2-ethanediyl) bis (nitrilopropylidyne)] bisphenol} with bovine …