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Effects of agitation level on the adsorption, desorption, and activities on cotton fabrics of full length and core domains of EGV(humicola insolens) and CenA (cellulomonas fimi)

机译:搅拌水平对EGV(腐殖质)和CenA(纤维纤溶酶)全长和核心域的棉织物的吸附,解吸和活性的影响

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摘要

The activities (at pH 7 and 50 degrees C) of purified EGV (Humicola insolens) and CenA (Cellulomonas fimi) were determined on cotton fabrics at high and low levels of mechanical agitation. Similar activity measurements were also made by using the core domains of these cellulases. Activity experiments suggested that the presence of cellulose binding domains (CBDs) is not essential for cellulase performance in the textile processes, where high levels of mechanical agitation are applied. The binding reversibilities of these cellulases and their cores were studied by dilution of the treatment liquor after equilibrium adsorption. EGV showed low percentage of adsorption under both levels of agitation. It was observed that the adsorption/desorption processes of cellulases are enhanced by higher mechanical agitation levels and that the binding of cellulase with CBD of family I (EGV) is more reversible than that of CBD of the cellulase of family II (CenA). (C) 2000 Elsevier Science Inc. All rights reserved.
机译:在高和低水平的机械搅拌下,测定纯棉EGV(Humicola insolens)和CenA(Cellulomonas fimi)的活性(在pH 7和50摄氏度下)。通过使用这些纤维素酶的核心结构域也进行了类似的活性测量。活性实验表明,纤维素结合结构域(CBD)的存在对于纺织过程中的纤维素酶性能不是必不可少的,在纺织过程中需要进行高水平的机械搅拌。通过平衡吸附后稀释处理液,研究了这些纤维素酶及其核心的结合可逆性。 EGV在两种搅拌下均显示出较低的吸附百分比。观察到,纤维素酶的吸附/解吸过程通过较高的机械搅拌水平而增强,并且纤维素酶与家族I的纤维素酶(EGV)的结合比家族II的纤维素酶(CenA)的CBD的结合更可逆。 (C)2000 Elsevier Science Inc.保留所有权利。

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