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Characterization of Aspergillus aculeatus β-glucosidase 1 accelerating cellulose hydrolysis with Trichoderma cellulase system

机译:木霉纤维素酶系统表征刺曲霉β-葡萄糖苷酶1促进纤维素水解

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摘要

Aspergillus aculeatus β-glucosidase 1 (AaBGL1), which promotes cellulose hydrolysis by Trichoderma cellulase system, was characterized and compared some properties to a commercially supplied orthologue in A. niger (AnBGL) to elucidate advantages of recombinant AaBGL1 (rAaBGL1) for synergistic effect on Trichoderma enzymes. Steady–state kinetic studies revealed that rAaBGL1 showed high catalytic efficiency towards β-linked glucooligosaccharides. Up to a degree of polymerization (DP) 3, rAaBGL1 prefered to hydrolyze β-1,3 linked glucooligosaccharides, but longer than DP 3, preferred β-1,4 glucooligosaccharides (up to DP 5). This result suggested that there were different formation for subsites in the catalytic cleft of AaBGL1 between β-1,3 and β-1,4 glucooligosaccharides, therefore rAaBGL1 preferred short chain of laminarioligosaccharides and long chain of cellooligosaccharides on hydrolysis. rAaBGL1 was more insensitive to glucose inhibition and more efficient to hydrolyze the one of major transglycosylation product, gentiobiose than AnBGL, resulting that rAaBGL1 completely hydrolyzed 5% cellobiose to glucose faster than AnBGL. These data indicate that AaBGL1 is valuable for the use of cellulosic biomass conversion.
机译:对刺曲霉β-葡萄糖苷酶1(AaBGL1)促进木霉属纤维素酶系统促进纤维素的水解进行了表征,并将其与黑曲霉(AnBGL)的市售直向同源物(AnBGL)的某些特性进行了比较,以阐明重组AaBGL1(rAaBGL1)对协同作用的优势木霉属酶。稳态动力学研究表明,rAaBGL1对β-连接的葡糖寡糖显示出高催化效率。直至聚合度(DP)3,rAaBGL1倾向于水解β-1,3连接的葡糖寡糖,但比DP 3长,优选β-1,4葡糖寡糖(至DP 5)。该结果表明,在β-1,3和β-1,4葡萄糖寡糖之间,AaBGL1的催化裂口中的亚位形成不同,因此,rAaBGL1在水解时优选短链寡糖和纤维素寡糖的长链。与AnBGL相比,rAaBGL1对葡萄糖抑制更不敏感,并且更有效地水解一种主要的转糖基化产物龙胆二糖,从而导致rAaBGL1将5%的纤维二糖完全水解为葡萄糖的速度比AnBGL快。这些数据表明,AaBGL1对于使用纤维素生物质转化非常有价值。

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