催化三位一体
肽
催化作用
生物催化
肽键
化学
酶
现存分类群
生物
生物化学
立体化学
活动站点
进化生物学
反应机理
作者
Chandranath Ghosh,Sneha Menon,Subhajit Bal,Surashree Goswami,Jagannath Mondal,Dibyendu Das
出处
期刊:Nano Letters
[American Chemical Society]
日期:2023-06-13
卷期号:23 (12): 5828-5835
被引量:11
标识
DOI:10.1021/acs.nanolett.3c01852
摘要
Through millions of years of the evolutionary journey, contemporary enzymes observed in extant metabolic pathways have evolved to become specialized, in contrast to their ancestors, which displayed promiscuous activities with wider substrate specificities. However, there remain critical gaps in our understanding of how these early enzymes could show such catalytic versatility despite lacking the complex three-dimensional folds of the existing modern-day enzymes. Herein, we report the emergence of a promiscuous catalytic triad by short amyloid peptide based nanofibers that access paracrystalline folds of β-sheets to expose three residues (lysine, imidazole, and tyrosine) toward solvent. The ordered folded nanostructures could simultaneously catalyze two metabolically relevant chemical transformations via C–O and C–C bond manipulations, displaying both hydrolase and retro-aldolase-like activities. Further, the latent catalytic capabilities of the short peptide based promiscuous folds also helped in processing a cascade transformation, suggesting the important role they might have played in protometabolism and early evolutionary processes.
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