基质(水族馆)
酶
化学
滥交
底物特异性
立体化学
功能(生物学)
生物催化
催化作用
反应条件
组合化学
反应机理
生物化学
生物
遗传学
生态学
作者
Lei Wang,Yaoyun Wu,Jun Hu,Dejing Yin,Wanqing Wei,Jian Wen,Xiulai Chen,Cong Gao,Yiwen Zhou,Jia Liu,Guipeng Hu,Xiaomin Li,Jing Wu,Zhi Zhou,Li Liu,Wei Song
标识
DOI:10.1038/s41467-024-50141-2
摘要
Abstract Exploring the promiscuity of native enzymes presents a promising strategy for expanding their synthetic applications, particularly for catalyzing challenging reactions in non-native contexts. In this study, we explore the promiscuous potential of old yellow enzymes (OYEs) to facilitate the Morita-Baylis-Hillman reaction (MBH reaction), leveraging substrate similarities between MBH reaction and reduction reaction. Using mass spectrometry and spectroscopic techniques, we confirm promiscuity of Gk OYE in both MBH and reduction reactions. By blocking H - and H + transfer pathways, we engineer Gk OYE.8, which loses its reduction ability but enhances its MBH activity. The structural basis of MBH reaction catalyzed by Gk OYE.8 is obtained through mutation studies and kinetic simulations. Furthermore, enantiocomplementary mutants Gk OYE.11 and Gk OYE.13 are obtained by directed evolution, exhibiting the ability to accept various aromatic aldehydes and alkenes as substrates. This study demonstrates the potential of leveraging substrate similarities to unlock enzyme functionalities, enabling the catalysis of new-to-nature reactions.
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