CAS and Shandong Province Key Laboratory of Experimental Marine Biology, Institute of Oceanology, Chinese Academy of Sciences, Qingdao, China.
Laboratory for Marine Biology and Biotechnology, Qingdao National Laboratory for Marine Science and Technology, Qingdao, China.
Nat Commun. 2023 Aug 9;14(1):4795. doi: 10.1038/s41467-023-40455-y.
Although enzyme catalysis is typified by high specificity, enzymes can catalyze various substrates (substrate promiscuity) and/or different reaction types (catalytic promiscuity) using a single active site. This interesting phenomenon is widely distributed in enzyme catalysis, with both fundamental and applied importance. To date, the mechanistic understanding of enzyme promiscuity is very limited. Herein, we report the structural mechanism underlying the substrate and catalytic promiscuity of Vibrio dual lipase/transferase (VDLT). Crystal structures of the VDLT from Vibrio alginolyticus (ValDLT) and its fatty acid complexes were solved, revealing prominent structural flexibility. In particular, the "Ser-His-Asp" catalytic triad machinery of ValDLT contains an intrinsically flexible oxyanion hole. Analysis of ligand-bound structures and mutagenesis showed that the flexible oxyanion hole and other binding residues can undergo distinct conformational changes to facilitate substrate and catalytic promiscuity. Our study reveals a previously unknown flexible form of the famous catalytic triad machinery and proposes a "catalytic site tuning" mechanism to expand the mechanistic paradigm of enzyme promiscuity.
尽管酶催化以高度特异性为特征,但酶可以使用单个活性位点催化各种底物(底物混杂性)和/或不同的反应类型(催化混杂性)。这种有趣的现象在酶催化中广泛存在,具有基础和应用的重要性。迄今为止,对酶混杂性的机制理解非常有限。在此,我们报告了 Vibrio 双脂酶/转移酶(VDLT)的底物和催化混杂性的结构机制。从溶藻弧菌(ValDLT)中解决了 Vibrio 双脂酶/转移酶(VDLT)及其脂肪酸复合物的晶体结构,揭示了突出的结构灵活性。特别是,ValDLT 的“Ser-His-Asp”催化三联体机械包含内在灵活的阴离子空穴。配体结合结构和突变分析表明,灵活的阴离子空穴和其他结合残基可以进行独特的构象变化,以促进底物和催化混杂性。我们的研究揭示了著名的催化三联体机械的以前未知的灵活形式,并提出了“催化位点调谐”机制,以扩展酶混杂性的机制范例。