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关于十聚体对阿魏酸酯酶催化活性的寡聚效应的结构见解及其在阿魏酸生产中的应用。

Structural insights into the oligomeric effects on catalytic activity of a decameric feruloyl esterase and its application in ferulic acid production.

机构信息

Laboratory of Biomanufacturing and Food Engineering, Institute of Food Science and Technology, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

Laboratory of Biomanufacturing and Food Engineering, Institute of Food Science and Technology, Chinese Academy of Agricultural Sciences, Beijing 100193, China; Institute of Food Science Technology Nutrition and Health (Cangzhou), Chinese Academy of Agricultural Sciences, Cangzhou 061001, China.

出版信息

Int J Biol Macromol. 2023 Dec 31;253(Pt 1):126540. doi: 10.1016/j.ijbiomac.2023.126540. Epub 2023 Aug 25.

Abstract

Oligomeric feruloyl esterase (FAE) has great application prospect in industry due to its potentially high stability and fine-tuned activity. However, the relationship between catalytic capability and oligomeric structure remains undetermined. Here we identified and characterized a novel, cold-adapted FAE (BtFae) derived from Bacteroides thetaiotaomicron. Structural studies unraveled that BtFae adopts a barrel-like decameric architecture unique in esterase families. By disrupting the interface, the monomeric variant exhibited significantly reduced catalytic activity and stability toward methyl ferulate, potentially due to its impact on the flexibility of the catalytic triad. Additionally, our results also showed that the monomerization of BtFae severely decreased the ferulic acid release from de-starched wheat bran and insoluble wheat arabinoxylan by 75 % and 80 %, respectively. Collectively, this study revealed novel connections between oligomerization and FAE catalytic function, which will benefit for further protein engineering of FAEs at the quaternary structure level for improved industrial applications.

摘要

寡聚阿魏酸酯酶(FAE)由于其潜在的高稳定性和精细的活性,在工业上具有广阔的应用前景。然而,催化能力与寡聚结构之间的关系尚不清楚。在这里,我们从拟杆菌属(Bacteroides thetaiotaomicron)中鉴定并表征了一种新型的、耐冷的 FAE(BtFae)。结构研究表明,BtFae 采用了一种独特的桶状十聚体结构,这在酯酶家族中是罕见的。通过破坏界面,单体变体对甲基阿魏酸的催化活性和稳定性显著降低,这可能是由于其对催化三联体的灵活性的影响。此外,我们的结果还表明,BtFae 的单体化使脱淀粉小麦麸皮和不溶性小麦阿拉伯木聚糖中阿魏酸的释放分别降低了 75%和 80%。总的来说,这项研究揭示了寡聚化和 FAE 催化功能之间的新联系,这将有助于在四级结构水平上进一步对 FAEs 进行蛋白质工程改造,以提高其在工业上的应用。

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