Efficiency and Stability Enhancement of Cis-epoxysuccinic Acid Hydrolase by Fusion with a Carbohydrate Binding Module and Immobilization onto Cellulose | |
Wang, Shan1,2; Cui, Gu-Zhen1,2; Song, Xiang-Fei1; Feng, Yingang1; Cui, Qiu1 | |
2012-10-01 | |
发表期刊 | APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY |
卷号 | 168期号:3页码:708-717 |
摘要 | Cis-epoxysuccinic acid hydrolase (CESH) is an enzyme that catalyzes cis-epoxysuccinic acid to produce enantiomeric L(+)-tartaric acid. The production of tartaric acid by using CESH would be valuable in the chemical industry because of its high yield and selectivity, but the low stability of CESH hampers its application. To improve the stability of CESH, we fused five different carbohydrate-binding modules (CBMs) to CESH and immobilized the chimeric enzymes on cellulose. The effects of the fusion and immobilization on the activity, kinetics, and stability of CESH were compared. Activity measurements demonstrated that the fusion with CBMs and the immobilization on cellulose increased the pH and temperature adaptability of CESH. The chimeric enzymes showed significantly different enzyme kinetics parameters, among which the immobilized CBM30-CESH exhibited twofold catalytic efficiency compared with the native CESH. The half-life measurements indicated that the stability of the enzyme in its free form was slightly increased by the fusion with CBMs, whereas the immobilization on cellulose significantly increased the stability of the enzyme. The immobilized CBM30-CESH showed the longest half-life, which is more than five times the free native CESH half-life at 30 °C. Therefore, most CBMs can improve enzymatic properties, and CBM30 is the best fusion partner for CESH to improve both its enzymatic efficiency and its stability. ; Cis-epoxysuccinic acid hydrolase (CESH) is an enzyme that catalyzes cis-epoxysuccinic acid to produce enantiomeric L(+)-tartaric acid. The production of tartaric acid by using CESH would be valuable in the chemical industry because of its high yield and selectivity, but the low stability of CESH hampers its application. To improve the stability of CESH, we fused five different carbohydrate-binding modules (CBMs) to CESH and immobilized the chimeric enzymes on cellulose. The effects of the fusion and immobilization on the activity, kinetics, and stability of CESH were compared. Activity measurements demonstrated that the fusion with CBMs and the immobilization on cellulose increased the pH and temperature adaptability of CESH. The chimeric enzymes showed significantly different enzyme kinetics parameters, among which the immobilized CBM30-CESH exhibited twofold catalytic efficiency compared with the native CESH. The half-life measurements indicated that the stability of the enzyme in its free form was slightly increased by the fusion with CBMs, whereas the immobilization on cellulose significantly increased the stability of the enzyme. The immobilized CBM30-CESH showed the longest half-life, which is more than five times the free native CESH half-life at 30 A degrees C. Therefore, most CBMs can improve enzymatic properties, and CBM30 is the best fusion partner for CESH to improve both its enzymatic efficiency and its stability. |
文章类型 | Article |
关键词 | Cis-epoxysuccinic Acid Hydrolase Carbohydrate Binding Module Fusion Enzyme Enzyme Stability Affinity Immobilization |
学科领域 | 代谢物组学 |
WOS标题词 | Science & Technology ; Life Sciences & Biomedicine |
DOI | 10.1007/s12010-012-9811-8 |
关键词[WOS] | ESCHERICHIA-COLI ; CLOSTRIDIUM-CELLULOVORANS ; AFFINITY PURIFICATION ; DOMAIN ; PROTEINS ; EXPRESSION ; ENZYME ; ADSORPTION ; CBM ; THERMOCELLUM |
收录类别 | SCI |
语种 | 英语 |
WOS研究方向 | Biochemistry & Molecular Biology ; Biotechnology & Applied Microbiology |
WOS类目 | Biochemistry & Molecular Biology ; Biotechnology & Applied Microbiology |
WOS记录号 | WOS:000309869100019 |
引用统计 | |
文献类型 | 期刊论文 |
条目标识符 | http://ir.qibebt.ac.cn/handle/337004/1222 |
专题 | 代谢物组学研究组 |
作者单位 | 1.Chinese Acad Sci, Qingdao Inst BioEnergy & Bioproc Technol, Key Lab Biofuels, Shandong Prov Key Lab Energy Genet, Qingdao 266101, Peoples R China 2.Chinese Acad Sci, Grad Sch, Beijing 100049, Peoples R China |
推荐引用方式 GB/T 7714 | Wang, Shan,Cui, Gu-Zhen,Song, Xiang-Fei,et al. Efficiency and Stability Enhancement of Cis-epoxysuccinic Acid Hydrolase by Fusion with a Carbohydrate Binding Module and Immobilization onto Cellulose[J]. APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY,2012,168(3):708-717. |
APA | Wang, Shan,Cui, Gu-Zhen,Song, Xiang-Fei,Feng, Yingang,&Cui, Qiu.(2012).Efficiency and Stability Enhancement of Cis-epoxysuccinic Acid Hydrolase by Fusion with a Carbohydrate Binding Module and Immobilization onto Cellulose.APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY,168(3),708-717. |
MLA | Wang, Shan,et al."Efficiency and Stability Enhancement of Cis-epoxysuccinic Acid Hydrolase by Fusion with a Carbohydrate Binding Module and Immobilization onto Cellulose".APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY 168.3(2012):708-717. |
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