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首页> 外文期刊>Biotechnology Progress >Functionalization of Cellulose Acetate Fibers with Engineered Cutinases
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Functionalization of Cellulose Acetate Fibers with Engineered Cutinases

机译:工程化角质酶对纤维素纤维的功能化

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摘要

In the present work, we describe for the first time the specific role of cutinase on surface modification of cellulose acetate fibers. Cutinase exhibits acetyl esterase activity on diacetate and triacetate of 0.010 U and 0.007 U, respectively. An increase on the hydroxyl groups at the fiber surface of 25% for diacetate and 317% for triacetate, after a 24 h treatment, is estimated by an indirect assay. Aiming at further improvement of cutinase affinity toward cellulose acetate, chimeric cutinases are genetically engineered by fusing the 3'-end coding sequence with a bacterial or a fungal carbohydrate-binding module and varying the linker DNA sequence. A comparative analysis of these genetic constructions is presented showing that, the superficial regeneration of cellulose hydrophilicity and reactivity on highly substituted cellulose acetates is achieved by chimeric cutinases.
机译:在本工作中,我们首次描述了角质酶在醋酸纤维素纤维表面改性中的特定作用。角质酶对二乙酸酯和三乙酸酯分别显示0.010 U和0.007 U的乙酰酯酶活性。通过间接测定,估计24小时处理后,纤维表面羟基的二乙酸盐增加25%,三乙酸盐增加317%。为了进一步提高角质酶对乙酸纤维素的亲和力,通过将3'端编码序列与细菌或真菌碳水化合物结合模块融合并改变接头DNA序列,对嵌合角质酶进行了基因工程改造。对这些遗传结构的比较分析表明,嵌合角质酶可实现纤维素亲水性和在高度取代的乙酸纤维素上的反应性的表面再生。

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