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首页> 外文期刊>Journal of Molecular Biology >Crystal structure of alkaline cellulase K: Insight into the alkalineadaptation of an industrial enzyme
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Crystal structure of alkaline cellulase K: Insight into the alkalineadaptation of an industrial enzyme

机译:碱性纤维素酶K的晶体结构:深入了解工业酶的碱性

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摘要

The crystal structure of the catalytic domain of alkaline cellulase K was determined at 1.9 Angstrom resolution. Because of the most alkaliphilic nature and it's highest activity at pH 9.5, it is used commercially in laundry detergents. An analysis of the structural bases of the alkaliphilic character of the enzyme suggested a mechanism similar to that previously proposed for alkaline proteases, that is, an increase in the number of Arg, His, and Gln residues, and a decrease in Asp and Lys residues. Some ion pairs were formed by the gained Arg residues, which is similar to what has been found in the alkaline proteases. Lys-Asp ion pairs are disfavored and partly replaced with Arg-Asp ion pairs. The alkaline adaptation appeared to be a remodeling of ion pairs so that the charge balance is kept in the high pH range.
机译:以1.9埃的分辨率测定碱性纤维素酶K的催化结构域的晶体结构。由于具有最强的亲水性,并且在pH 9.5时具有最高的活性,因此在商业上用于洗衣粉。对该酶的嗜碱性特征的结构基础的分析表明,该机制与先前针对碱性蛋白酶提出的机制相似,即,Arg,His和Gln残基数量增加,Asp和Lys残基减少。一些离子对是由获得的Arg残基形成的,这与碱性蛋白酶中发现的类似。 Lys-Asp离子对不利,部分被Arg-Asp离子对替代。碱性适应似乎是离子对的重塑,因此电荷平衡保持在高pH范围内。

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