双加氧酶
活动站点
基质(水族馆)
功能(生物学)
化学
酶
催化作用
生物合成
喹诺酮类
堆积
组合化学
分子模型
计算生物学
立体化学
生物化学
生物
遗传学
有机化学
生态学
抗生素
作者
Sophie L. Mader,Alois Bräuer,M. Groll,Ville R. I. Kaila
标识
DOI:10.1038/s41467-018-03442-2
摘要
Abstract The recently discovered Fe II /α-ketoglutarate-dependent dioxygenase AsqJ from Aspergillus nidulans stereoselectively catalyzes a multistep synthesis of quinolone alkaloids, natural products with significant biomedical applications. To probe molecular mechanisms of this elusive catalytic process, we combine here multi-scale quantum and classical molecular simulations with X-ray crystallography, and in vitro biochemical activity studies. We discover that methylation of the substrate is essential for the activity of AsqJ, establishing molecular strain that fine-tunes π-stacking interactions within the active site. To rationally engineer AsqJ for modified substrates, we amplify dispersive interactions within the active site. We demonstrate that the engineered enzyme has a drastically enhanced catalytic activity for non-methylated surrogates, confirming our computational data and resolved high-resolution X-ray structures at 1.55 Å resolution. Our combined findings provide crucial mechanistic understanding of the function of AsqJ and showcase how combination of computational and experimental data enables to rationally engineer enzymes.
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