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首页> 外文期刊>Journal of Applied Polymer Science >Modification of cellulase by synthesized copolymer with polyethylene oxide and maleic acid anhydride
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Modification of cellulase by synthesized copolymer with polyethylene oxide and maleic acid anhydride

机译:聚环氧乙烷与马来酸酐合成共聚物对纤维素酶的改性

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Copolymer containing functional groups such as polyethylene oxide (PEO) and maleic acid anhydride (MA) was synthesized to modify cellulase. MA was attached to the PEO allyl ester, which was the product formed by the reaction between PEO allyl alcohol and lauric acid. The number of ethylene oxide (EO) units in one PEO chain was varied from 10 to 40, and MA formed the chemical bond with the amino acid groups of the cellulase for the modification reaction. When cellulase was modified with synthesized copolymer, activity of the modified cellulase decreased slightly as the degree of modification increased. The modified enzyme showed high remaining activity regardless of a high degree of modification. At the maximum modification degree of 52%, the modified cellulase activity retained more than 65% of the unmodified native cellulase. Modified cellulase retained higher reactivity than native cellulase in an organic solvent and at various pH values, (C) 2000 John Wiley & Sons, Inc. [References: 11]
机译:合成了包含官能团的共聚物,例如聚环氧乙烷(PEO)和马来酸酐(MA),以修饰纤维素酶。 MA连接到PEO烯丙基酯上,该PEO烯丙基酯是由PEO烯丙醇和月桂酸之间的反应形成的产物。一条PEO链中的环氧乙烷(EO)单元数从10变为40,并且MA与纤维素酶的氨基酸基团形成化学键以进行修饰反应。当纤维素酶用合成共聚物改性时,改性纤维素酶的活性随改性程度的增加而略有下降。修饰的酶显示出高的残留活性,而与高度的修饰无关。在最大修饰度为52%时,修饰的纤维素酶活性保留了未修饰的天然纤维素酶的65%以上。在有机溶剂中和在各种pH值下,改性纤维素酶的反应性都比天然纤维素酶高,(C)2000 John Wiley&Sons,Inc. [参考:11]

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