黄素组
化学
黄素单核苷酸
赖氨酸
电子转移
电子传输链
脱氢酶
组合化学
细胞色素c
催化作用
生物化学
酶
有机化学
线粒体
氨基酸
作者
Baoli Zhang,Yuanxi Liu,Shichao Xu,Zhen‐Gang Wang
标识
DOI:10.1021/acsmaterialslett.4c00358
摘要
Flavoenzymes play pivotal roles in biological electron transport chains, yet replicating their functions synthetically remains challenging. Here, we report the assembly of a flavin mononucleotide (FMN) with lysine-rich peptides to form a flavin-containing catalyst, which mimics the catalytic function of NADH dehydrogenase (NDH) by oxidizing NADH and undergoing FMN reduction. Lysine residues create a conducive microenvironment, promoting the proximity of FMN and NADH and their hydride transfer. The resulting FMNH– facilitates sequential cytochrome c and enzymatic oxygen reduction, while NADH regenerates from enzymatic glucose dehydrogenation, akin to specific cellular respiration steps. Thus, the synthetic flavoenzyme emulates protein complex I. Lysine peptides aid in spatially organizing FMN, cytochrome c, and glucose dehydrogenase. Stability experiments reveal the resilience of the catalyst to temperatures up to 85 °C with recyclability when immobilized on a polymer support. These findings inform the design of biomimetic catalytic materials for bioinspired processes, offering insights into prebiotic protein complex models.
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