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Mechanism of cellobiose inhibition in cellulose hydrolysis by cellobiohydrolase

机译:纤维二糖水解酶抑制纤维素水解中纤维二糖的作用机理

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An experimental study of cellobiose inhibition in cellulose hydrolysis by synergism of cellobiohydrolyse I and endoglucanase I is presented. Cellobiose is the structural unit of cellulose molecules and also the main product in enzymatic hydrolysis ofcellulose. It has been identified that cellobiose can strongly inhibit hydrolysis reaction of cellulase, whereas it has no effect on the adsorption of cellulase on cellulose surface. The experimental data of FT-IR spectra, fluorescence spectrum and circular dichroism suggested that cellobiose can be combined with trypto-phan residue located near the active site of cellobiohydrolase and then form steric hindrance, which prevents cellulose molecule chains from diffusing into active site of cellulase. In addition, the molecular conformation of cellobiohydrolase changes after cellobiose binding, which also causes most of the non-productive adsorption. Under these conditions, microfibrils cannot be separated from cellulose chains, thus further hydrolysis ofcellulose can hardly proceed.
机译:提出了通过纤维二糖水解酶I和内切葡聚糖酶I协同作用抑制纤维素水解中纤维二糖的实验研究。纤维二糖是纤维素分子的结构单元,也是纤维素酶水解的主要产物。已经发现纤维二糖可以强烈抑制纤维素酶的水解反应,而对纤维素酶在纤维素表面上的吸附没有影响。 FT-IR光谱,荧光光谱和圆二色性的实验数据表明,纤维二糖可以与纤维二糖水解酶活性位点附近的色氨酸残基结合,然后形成空间位阻,从而阻止纤维素分子链扩散到纤维素酶的活性位点。 。另外,纤维二糖结合后纤维二糖水解酶的分子构象发生变化,这也引起了大部分非生产性吸附。在这些条件下,微纤维不能从纤维素链中分离出来,因此很难进一步水解纤维素。

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