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How endoglucanase enzymes act on cellulose nanofibrils: role of amorphous regions revealed by atomistic simulations

机译:内切葡聚糖酶如何作用于纤维素纳米纤维:原子模拟揭示的非晶区的作用

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Transformation of cellulose into monosaccharides can be achieved in a chemical process performed by a special group of enzymes known as cellulases. We have used atomistic molecular dynamics simulations to study endoglucanase II (Cel5A) that is one of the proteins in this group. Based on the atomistic simulation results, we discuss how the Cel5A enzyme interacts with cellulose fibrils comprised of both crystalline and amorphous regions. We show that the enzyme's carbohydrate-binding domain prefers to interact with crystalline regions of cellulose, while the catalytic domain has a high affinity to the amorphous regions of fibrils. In particular, through electrostatic interactions the catalytic domain attracts loose glucose chains to its catalytic cleft. The atomistic details of the enzyme-cellulose interaction are presented and the implications for practical applications are briefly discussed.
机译:纤维素向单糖的转化可以通过称为纤维素酶的一组特殊酶完成的化学过程来实现。我们已经使用原子分子动力学模拟来研究内切葡聚糖酶II(Cel5A),这是该组蛋白之一。基于原子模拟结果,我们讨论了Cel5A酶如何与包含结晶区和非晶区的纤维素原纤维相互作用。我们表明,酶的碳水化合物结合结构域更喜欢与纤维素的结晶区域相互作用,而催化结构域对原纤维的无定形区域具有很高的亲和力。特别地,通过静电相互作用,催化结构域将疏松的葡萄糖链吸引至其催化裂隙。介绍了酶与纤维素相互作用的原子细节,并简要讨论了其在实际应用中的意义。

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