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Cellulose binding domain assisted immobilization of lipase (GSlip-CBD) onto cellulosic nanogel: characterization and application in organic medium

메타 데이터

바이오화학분류
    • 바이오정밀화학
      1. 화학제품
    • 화장품용 기능성소재
      1. 계면활성제⁄증점제
    • 의료용 화학소재
      1. 식품첨가제
논문

Cellulose binding domain assisted immobilization of lipase (GSlip-CBD) onto cellulosic nanogel: characterization and application in organic medium

학술지

Colloids and surfaces. B, Biointerfaces

저자명

Kumar, A.; Zhang, S.; Wu, G.; Wu, C.C.; Chen, J.; Baskaran, R.; Liu, Z.

초록

A cbd gene was cloned into the C-terminal region of a lip gene from Geobacillus stearothermophilus. The native lipase (43.5kDa) and CBD-Lip fusion protein (60.2kDa) were purified to homogeneity by SDS-PAGE. A highly stable cellulosic nanogel was prepared by controlled hydrolysis of microcrystalline cellulose onto which the CBD-lip fusion protein was immobilized through bio-affinity based binding. The nanogel-bound lipase showed optimum activity at 55<SUP>o</SUP>C, and it remains stable and active at pH 10-10.5. Furthermore, the immobilized lipase showed an over two-fold increase of relative activity in the presence of DMSO, isopropanol, isoamyl alcohol and n-butanol, but a mild activity decrease at a low concentration of methanol and ethanol. The immobilized biocatalyst retained ~50% activity after eight repetitive hydrolytic cycles. Enzyme kinetic studies of the immobilized lipase showed a 1.24 fold increase in V<SUB>max</SUB> and 5.25 fold increase in kcat towards p-NPP hydrolysis. Additionally, the nanogel bound lipase was tested to synthesize a biodiesel ester, ethyl oleate in DMSO. Kinetic analysis showed the k<SUB>m</SUB> 100.5+/-4.3mmol and V<SUB>max</SUB> 0.19+/-0.015mmolmin<SUP>-1</SUP> at varied oleic acid concentration. Also, the values of k<SUB>m</SUB> and V<SUB>max</SUB> at varying concentration of ethanol were observed to be 95.9+/-13.9mmol and 0.22+/-0.013mmolmin<SUP>-1</SUP> respectively. The maximum yield of ethyl oleate 111.2+/-1.24mM was obtained under optimized reaction conditions in organic medium. These results suggest that this immobilized biocatalyst can be used as an efficient tool for the biotransformation reactions on an industrial scale.

발행연도

2015

발행기관

Elsevier

ISSN

0927-7765

136

페이지

pp.1042-1050

주제어

Nanogel; Lipase; Immobilization; Reusability; Ethyl oleate

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논문; 2015-12-31

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