阿魏酸
化学
催化三位一体
四级结构
酯酶
催化作用
生物化学
单体
阿拉伯木聚糖
蛋白质结构
催化效率
有机化学
酶
活动站点
聚合物
蛋白质亚单位
基因
作者
Guoming Du,Yulu Wang,Yuebin Zhang,Haiyan Yu,Shujun Liu,Xiaochen Ma,Hao Cao,Xue Wei,Boting Wen,Zhen Li,Shilong Fan,Huan Zhou,Fengjiao Xin
标识
DOI:10.1016/j.ijbiomac.2023.126540
摘要
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.
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