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Enhanced activity toward PET by site-directed mutagenesis of Thermobifidafusca cutinase-CBM fusion protein

机译:通过定点诱变嗜热双歧角质酶-CBM融合蛋白增强对PET的活性

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摘要

In the present study, cutinase-CBMcenA fusion protein was genetically modified in the carbohydrate-binding module (CBM) binding sites, by site-directed mutagenesis, to enhance its activity toward polyethylene terephthalate (PET) fiber. The effects of tryptophan at particular positions of CBM_(CenA) on the binding and hydrolysis of polyester substrate were investigated by replacing each of Trpl4, Trp50 and Trp68 with leucine or tyrosine, respectively. All the mutants were expressed in Escherichia coli and purified to homogeneity. Enzyme characterization showed that the mutants displayed similar thermostability and pH stabilities in response to the native enzyme. Furthermore, W68L and W68Y, among all the mutants, exhibited significant improvement in binding and catalytic efficiency (1.4-1.5 fold) toward PET fiber when compared to that of the native enzyme. The enhanced binding and hydrolytic activity might be a result of creating new hydrogen bond or hydrophobic interaction between the enzyme and PET fiber.
机译:在本研究中,通过定点诱变,在碳水化合物结合模块(CBM)结合位点对角质酶-CBMcenA融合蛋白进行了基因修饰,以增强其对聚对苯二甲酸乙二酯(PET)纤维的活性。通过分别用亮氨酸或酪氨酸替代Trpl4,Trp50和Trp68,研究了色氨酸在CBM_(CenA)特定位置对聚酯底物结合和水解的影响。所有突变体均在大肠杆菌中表达并纯化至同质。酶表征显示,突变体响应于天然酶表现出相似的热稳定性和pH稳定性。此外,与天然酶相比,在所有突变体中,W68L和W68Y表现出对PET纤维的结合和催化效率的显着改善(1.4-1.5倍)。增强的结合和水解活性可能是在酶和PET纤维之间产生新的氢键或疏水相互作用的结果。

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