合作性
胡萝卜素
基质(水族馆)
化学
底物特异性
生物物理学
生物
生物化学
食品科学
酶
生态学
作者
Jieren Liao,Umar F. Shahul Hameed,Timothy D. Hoffmann,Elisabeth Kurze,Guangxin Sun,Wieland Steinchen,Alessandro Nicoli,Antonella Di Pizio,Christina Kuttler,Chuankui Song,Dragana A. M. Catici,Farhah F. Assaad,Thomas Hoffmann,Stefan T. Arold,Wilfried Schwab
标识
DOI:10.1038/s41467-025-58259-7
摘要
Enzymes are essential catalysts in biological systems. Substrate inhibition, once dismissed, is now observed in 20% of enzymes1 and is attributed to the formation of an unproductive enzyme-substrate complex, with no structural evidence of unproductivity provided to date1-6. This study uncovers the molecular mechanism of substrate inhibition in tobacco glucosyltransferase NbUGT72AY1, which transfers glucose to phenols for plant protection. The peculiarity that β-carotene strongly attenuates the substrate inhibition of NbUGT72AY1, despite being a competitive inhibitor, allows to determine the conformational changes that occur during substrate binding in both active and substrate-inhibited complexes. Crystallography reveals structurally different ternary enzyme-substrate complexes that do not conform to classical mechanisms. An alternative pathway suggests substrates bind randomly, but the reaction occurs only if a specific order is followed (asymmetric cooperativity). This unreported paradigm explains substrate inhibition and reactivation by competitive inhibitors, opening new research avenues in metabolic regulation and industrial applications.
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