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Do Cellulose Binding Domains Increase Substrate Accessibility?

机译:纤维素结合结构域是否增加基板可接近性?

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This article provides an overview of various theories proposed during the past five decades to describe the enzymatic hydrolysis of cellulose highlighting the major shifts that these theories have undergone. It also describes the effect of the cellulose-binding domain (CBD) of an exoglucanase/xylanase from bacterium Cellulomonas fimi on the enzymatic hydrolysis of Avicel. Pretreatment of Avicel with CBD_(Cex) at 4 and 37°Cas well as simultaneous addition of CBD_(Cex) to the hydrolytic enzyme (Celluclast, Novo, Nordisk) reduced the initial rate of hydrolysis owing to irreversible binding of CBD proteins to the substrate's binding sites. Nonetheless, near complete hydrolysis was achieved even in the presence of CBD_(Cex). Protease treatment of both pure and CBD_(Cex)-treated Avicel reduced the substrates' hydrolyzability, perhaps owing to proteolysis of the hydrolyzing enzyme (Celluclast) by the residual Proteinase K remaining in the substrate. Better protocols for complete removal of CBD proteins from the substrate need to be developed to investigate the effect of CBD adsorption on cellulose digestibility.
机译:本文概述了过去五十年中提出的各种理论,以描述纤维素的酶水解突出这些理论经历的主要变化。它还描述了外葡聚糖酶/木聚糖酶的纤维素结合结构域(CBD)的效果来自细菌细胞中的细菌菌酶的酶促水解。用CBD_(CEX)的预处理在4和37°CAS中,并同时添加CBD_(CEX)至水解酶(CELLUCLAST,NOVO,Nordisk),由于CBD蛋白对基底的不可逆结合而降低了水解的初始水解率绑定站点。尽管如此,即使在CBD_(CEX)存在下,也可以实现接近完全水解。纯和CBD_(CEX)-Treated的蛋白酶治疗脱毛纤维素降低了底物的水解性,可能是由于水解酶(Celluclast)的蛋白水解通过残留在基材中的残余蛋白酶K.需要开发出从基质中完全除去CBD蛋白质的更好的方案以研究CBD吸附对纤维素消化率的影响。

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