An Artificial Metal‐Free Peroxidase Designed Using a Ferritin Cage for Bioinspired Catalysis
Abstract
Abstract Developing artificial enzymes is challenging because it requires precise design of active sites with well‐arranged amino acid residues. Histidine‐rich oligopeptides have been recently shown to exhibit peroxidase‐mimetic activities, but their catalytic function relies on maintaining unique supramolecular structures. This work demonstrates the design of a specific array of histidine residues on the internal surface of the ferritin cage to function as an active center for catalysis. The crystal structures of the ferritin mutants revealed histidine–histidine interactions, forming well‐defined histidine clusters (His‐clusters). These mutants exhibit peroxidase‐mimetic activities by oxidizing 3,3′,5,5′‐tetramethylbenzidine (TMB) in the presence of hydrogen peroxide. Molecular dynamics simulations further highlight the co‐localization of TMB and hydrogen peroxide at the histidine‐rich clusters, indicating that the confined environment of the ferritin cage enhances their interactions. This study presents a simple yet effective approach to design metal‐free artificial enzymes, paving the way for innovations in bioinspired catalysis.
Article Details
Authors (5)
Jiaxin Tian
Changchun Veterinary Research Institute, Chinese Academy of Agricultural Sciences
Basudev Maity
School of Life Science and Technology Institute of Science Tokyo 4259 Nagatsuta‐cho, Midori‐ku Yokohama Kanagawa 226‐8501 Japan
Tadaomi Furuta
Tiezheng Pan
School of Life Science and Technology Institute of Science Tokyo 4259 Nagatsuta‐cho, Midori‐ku Yokohama Kanagawa 226‐8501 Japan
Takafumi Ueno