连接器
纤维素酶
纤维素
碳水化合物结合模块
生物化学
糖基化
化学
水解
计算机科学
操作系统
作者
Yue Yuan,Chunshu Chen,Xueyan Wang,Shaonian Shen,Xiaoyu Guo,Xiaoyi Chen,Fan Yang,Xianzhen Li
标识
DOI:10.1186/s40643-022-00519-1
摘要
Abstract Improved understanding of cellulose swelling mechanism is beneficial for increasing the hydrolysis efficiency of cellulosic substrates. Here, we report a family 5 glycoside hydrolase ArCel5 isolated from the cellulose-gelatinizing fungus Arthrobotrys sp. CX1. ArCel5 exhibited low specific hydrolysis activity and high cellulose swelling capability, which suggested that this protein might function as an accessory protein. Homology modeling glycosylation detection revealed that ArCel5 is a multi-domain protein including a family 1 carbohydrate-binding module, a glycosylation linker, and a catalytic domain. The adsorption capacity, structural changes and hydrature index of filter paper treated by different ArCel5 mutants demonstrated that CBM1 and linker played an essential role in recognizing, binding and decrystallizing cellulosic substrates, which further encouraged the synergistic action between ArCel5 and cellulases. Notably, glycosylation modification further strengthened the function of the linker region. Overall, our study provides insight into the cellulose decrystallization mechanism by a novel accessory protein ArCel5 that will benefit future applications. Graphical Abstract
科研通智能强力驱动
Strongly Powered by AbleSci AI