Analysis of immobilized L-glutamate oxidase fused with cellulose binding domain on microcrystalline cellulose
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Tianjin Municipal Science & Technology Project (No. 14ZCZDSY00057).

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    Abstract:

    Immobilization of enzymes is important and widely applied in biocatalysis. Streptomyces platensis gene gox, encoding an extracellular L-glutamate oxidase (Gox), was fused to cellulose binding domain (CBDcex) from Cellulomonas fimi and the recombinant protein Gox-CBD was expressed in Escherichia coli. The fusion protein (Gox-CBD) was immobilized onto microcrystalline cellulose. The preparation conditions, binding capacity, properties and stability of the immobilized enzyme were studied. Under the condition of 4 ℃, for 1 hour, the fusion protein Gox-CBD was able to bind microcrystalline cellulose at a ratio of 9.0 mg of protein per gram of microcrystalline cellulose. Enzymatic properties of free and immobilized L-glutamic oxidase (Gox-CBD) were compared. The specific activity of the immobilized enzyme decreased, but its thermal stability increased a lot compared with that of the free Gox-CBD. After incubation at 60 ℃ for 30 min, 70% of the total activity remained whereas the free recombinant Gox completely lost its activity. The immobilized protein was tightly bound to microcrystalline cellulose at pH below 10 or more than 5 mmol/L NaCl. The fusion protein of Gox-CBD can be specifically immobilized on the microcrystalline cellulose on a single step. Therefore, our findings can provide a novel strategy for protein purification and enzyme immobilization.

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宋辉,张文宇,王鹏举,谭焕波,苏文成,赵树欣,邹培建. L-谷氨酸氧化酶与CBD的融合表达及其在微晶纤维素上固定化分析[J]. Chinese Journal of Biotechnology, 2016, 32(10): 1348-1361

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  • Received:March 01,2016
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  • Online: September 23,2016
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