化学
肽
人工酶
组合化学
酶
催化作用
氨基酸
活动站点
蛋白质工程
蛋白质设计
肽序列
仿生材料
生物化学
肽合成
选择性
生物催化
生物活性
纳米技术
代谢稳定性
定向进化
作者
Claudia Spallacci,Marco Chino,Antonio Rosato,Ornella Maglio,Ping Jie Huang,Luca D’Amario,Angela Lombardi,Claudia Andreini,Mun Hon Cheah
标识
DOI:10.1038/s42004-025-01702-z
摘要
Abstract Nature-inspired or biomimetic catalysts aim to reach the high catalytic performance and selectivity of natural enzymes while possessing the chemical stability and processability of synthetic catalysts. A promising strategy for designing biomimetic catalysts relies on mimicking the structure of the enzyme active site. This can either entail complicated total synthesis of a synthetic catalyst or design of peptide sequences, able to self-assemble in the presence of metal ions, thus forming metallo-peptide complexes that mimic the active sites of natural enzymes. Using a bioinformatics approach, we designed a minimal peptide made up of eight amino acids (H4pep) to act as a functional mimic of the trinuclear Cu site of the laccase enzyme. Cu(II) binding to H4pep results in the formation of a Cu 2+ (H4pep) 2 complex with a β-sheet secondary structure, able to reduce O 2 . Our study demonstrates the viability and potential of using short peptides to mimic the minimal functional site of natural enzymes.
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