Section for Protein Chemistry and Enzyme Technology, Department of Biotechnology and Biomedicine, Technical University of Denmark, Søltofts Plads, Building 221, DK-2800 Kgs. Lyngby, Denmark.
Novozymes A/S, Biologiens Vej 2, DK-2800 Kgs. Lyngby, Denmark.
Int J Biol Macromol. 2023 Mar 31;232:123365. doi: 10.1016/j.ijbiomac.2023.123365. Epub 2023 Jan 21.
Feruloyl esterases (FAEs, EC 3.1.1.73) catalyze the hydrolytic cleavage of ester bonds between feruloyl and arabinosyl moieties in arabinoxylans. Recently, we discovered that two bacterial FAEs could catalyze release of diferulic acids (diFAs) from highly substituted, cross-linked corn bran arabinoxylan. Here, we show that several fungal FAEs, notably AnFae1 (Aspergillus niger), AoFae1 (A. oryzae), and MgFae1 (Magnaporthe oryzae (also known as M. grisae)) also catalyze liberation of diFAs from complex arabinoxylan. By comparing the enzyme kinetics of diFA release to feruloyl esterase activity of the enzymes on methyl- and arabinosyl-ferulate substrates we demonstrate that the diFA release activity cannot be predicted from the activity of the enzymes on these synthetic substrates. A detailed structure-function analysis, based on AlphaFold2 modeled enzyme structures and docking with the relevant di-feruloyl ligands, reveal how distinct differences in the active site topology and surroundings may explain the diFA releasing action of the enzymes. Interestingly, the analysis also unveils that the carbohydrate binding module of the MgFae1 may play a key role in the diFA releasing ability of this enzyme. The findings contribute further understanding of the function of FAEs in the deconstruction of complex arabinoxylans and provide new opportunities for enzyme assisted upgrading of complex bran arabinoxylans.
阿魏酸酯酶(FAEs,EC 3.1.1.73)催化阿魏酰阿拉伯呋喃糖苷和阿拉伯木聚糖之间酯键的水解断裂。最近,我们发现两种细菌 FAEs 可以催化高度取代的交联玉米麸阿拉伯木聚糖中二阿魏酸(diFAs)的释放。在这里,我们表明几种真菌 FAEs,特别是 AnFae1(黑曲霉)、AoFae1(米曲霉)和 MgFae1(稻瘟病菌(也称为 M. grisae)),也可以催化复杂阿拉伯木聚糖中二 FAs 的释放。通过比较酶促动力学和酶对甲基和阿拉伯糖基阿魏酸酯底物的 feruloyl 酯酶活性,我们证明不能根据这些合成底物上酶的活性来预测二 FAs 的释放活性。基于 AlphaFold2 建模酶结构和与相关二阿魏酰配体对接的详细结构功能分析,揭示了活性位点拓扑结构和周围环境的明显差异如何解释酶的二 FA 释放作用。有趣的是,该分析还揭示了 MgFae1 的碳水化合物结合模块可能在该酶的二 FA 释放能力中发挥关键作用。这些发现有助于进一步了解 FAEs 在复杂阿拉伯木聚糖解构中的功能,并为酶辅助复杂麸阿拉伯木聚糖升级提供了新的机会。