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首页> 外文期刊>Enzyme and Microbial Technology >Fusion of cellulose binding domain from Trichoderma reesei CBHI to Cryptococcus sp. S-2 cellulase enhances its binding affinity and its cellulolytic activity to insoluble cellulosic substrates
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Fusion of cellulose binding domain from Trichoderma reesei CBHI to Cryptococcus sp. S-2 cellulase enhances its binding affinity and its cellulolytic activity to insoluble cellulosic substrates

机译:来自里氏木霉CBHI的纤维素结合域与隐球菌的融合。 S-2纤维素酶增强其对不溶性纤维素底物的结合亲和力和纤维素分解活性

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摘要

Cryptococcus sp. S-2 carboxymethyl cellulase (CSCMCase) is active in the acidic pH and lacks a binding domain. The absence of the binding domain makes the enzyme inefficient against insoluble cellulosic substrates. To enhance its binding affinity and its cellulolytic activity to insoluble cellulosic substrates, cellulose binding domain (CBD) of cellobiohydrolase I (CBHI) from Trichoderma reesei belonging to carbohydrate bindingmodule (CBM) family 1 was fused at the C-terminus of CSCMCase. The constructed fusion enzymes (CSCMCase-CBD and CSCMCase-2CBD) were expressed in a newly recombinant expression system of Cryptococcus sp. S-2, purified to homogeneity, and then subject to detailed characterization. The recombinant fusion enzymes displayed optimal pH similar to those of the native enzyme. Compared with rCSCMCase, the recombinant fusion enzymes had acquired an increased binding affinity to insoluble cellulose and the cellulolytic activity toward insoluble cellulosic substrates (SIGMACELL~R and Avicel) was higher than that of native enzyme, confirming the presence of CBDs improve the binding and the cellulolytic activity of CSCMCase on insoluble substrates. This attribute should make CSCMCase an attractive applicant for various application.
机译:隐球菌S-2羧甲基纤维素酶(CSCMCase)在酸性pH中具有活性,并且缺乏结合域。缺乏结合结构域使酶对不溶性纤维素底物的效率低下。为了增强其对不溶性纤维素底物的结合亲和力和纤维素分解活性,将属于糖结合模块(CBM)家族1的里氏木霉纤维二糖水解酶I(CBHI)的纤维素结合域(CBD)融合在CSMCCase的C末端。构建的融合酶(CSCMCase-CBD和CSCMCase-2CBD)在隐球菌新重组表达系统中表达。 S-2,纯化至均质,然后进行详细表征。重组融合酶显示出与天然酶相似的最佳pH。与rCSCMCase相比,重组融合酶与不溶性纤维素的结合亲和力增强,并且对不溶性纤维素底物(SIGMACELL〜R和Avicel)的纤维素分解活性高于天然酶,证实了CBD的存在改善了结合力, CSCMCase对不溶性底物的纤维素分解活性。此属性应使CSCMCase成为各种应用程序的有吸引力的申请人。

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