区域选择性
亲核细胞
哌啶酸
化学
生物催化
酮
组合化学
立体化学
对接(动物)
基质(水族馆)
氨基酸
催化作用
生物化学
有机化学
反应机理
医学
海洋学
护理部
地质学
作者
Shaonan Liu,Christopher Yeh,C. Reavill,Benjamin Jones,Yike Zou,Yang Hai
标识
DOI:10.1002/anie.202317161
摘要
Abstract Pyridoxal 5’‐phosphate (PLP)‐dependent enzymes that catalyze γ‐replacement reactions are prevalent, yet their utilization of carbon nucleophile substrates is rare. The recent discovery of two PLP‐dependent enzymes, CndF and Fub7, has unveiled unique C−C bond forming capabilities, enabling the biocatalytic synthesis of alkyl‐ substituted pipecolic acids from O‐ acetyl‐L‐homoserine and β‐keto acid or aldehyde derived enolates. This breakthrough presents fresh avenues for the biosynthesis of pipecolic acid derivatives. However, the catalytic mechanisms of these enzymes remain elusive, and a dearth of structural information hampers their extensive application. Here, we have broadened the catalytic scope of Fub7 by employing ketone‐derived enolates as carbon nucleophiles, revealing Fub7’s capacity for substrate‐dependent regioselective α‐alkylation of unsymmetrical ketones. Through an integrated approach combining X‐ray crystallography, spectroscopy, mutagenesis, and computational docking studies, we offer a detailed mechanistic insight into Fub7 catalysis. Our findings elucidate the structural basis for its substrate specificity, stereoselectivity, and regioselectivity. Our work sets the stage ready for subsequent protein engineering effort aimed at expanding the synthetic utility of Fub7, potentially unlocking novel methods to access a broader array of noncanonical amino acids.
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