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基于几丁质结合结构域固定化D-海因酶

Chitin-binding domain based immobilization of D-hydantoinase.

作者信息

Chern Jong-Tzer, Chao Yun-Peng

机构信息

Department of Chemical Engineering, Feng Chia University, 100 Wenhwa Road, Taichung, Taiwan.

出版信息

J Biotechnol. 2005 May 25;117(3):267-75. doi: 10.1016/j.jbiotec.2005.02.001. Epub 2005 Mar 25.

Abstract

Chitin-binding domain (ChBD) of chitinase A1 from Bacillus circulans WL-12 comprises 45 amino acids and exhibits remarkably high specificity to chitin (Hashimoto, M., Ikegami, T., Seino, S., Ohuchi, N., Fukada, H., Sugiyama, J., Shirakawa, M., Watanabe, T., 2000. Expression and characterization of the chitin-binding domain of chintinase A1 from B. circulans WL-12. J. Bacteriol. 182, 3045-3054.). To investigate the feasibility of exploiting ChBD as affinity tags to confine enzymes of interest on chitin, ChBD fused to the C-terminus of the gene encoding D-hydantoinase was constructed. Subsequent expression of the hybrid protein in Escherichia coli gave a soluble fraction accounting for 8% of total cell protein content. Direct adsorption of the ChBD-fused D-hydantoinase on chitin beads was carried out, and SDS-PAGE analysis showed that the linkage between the fusion protein and the affinity matrix was highly specific, substantially stable, and reversible. As compared to its free counterpart, the immobilized D-hydantoinase exhibited higher tolerance to heat and gained a half life of 270 h at 45 degrees C. In addition, the shelf life (defined as 50% of initial activity remained) of the immobilized enzyme stored at 4 degrees C was found to reach 65 days. Furthermore, D-hydantoinase immobilized on chitin could be reused for 15 times to achieve the conversion yield exceeding 90%. Overall, it illustrates the great usefulness of ChBD for enzyme immobilization.

摘要

环状芽孢杆菌WL-12的几丁质酶A1的几丁质结合结构域(ChBD)由45个氨基酸组成,对几丁质具有极高的特异性(桥本,M.,池上,T.,关野,S.,大内,N.,深田,H.,杉山,J.,白川,M.,渡边,T.,2000年。环状芽孢杆菌WL-12几丁质酶A1几丁质结合结构域的表达与特性。《细菌学杂志》182,3045 - 3054页)。为了研究利用ChBD作为亲和标签将目标酶固定在几丁质上的可行性,构建了与编码D - 海因酶的基因C端融合的ChBD。随后该杂合蛋白在大肠杆菌中表达,可溶部分占细胞总蛋白含量的8%。将ChBD融合的D - 海因酶直接吸附在几丁质珠上,SDS - PAGE分析表明融合蛋白与亲和基质之间的连接具有高度特异性、基本稳定且可逆。与游离的D - 海因酶相比,固定化的D - 海因酶表现出更高的热耐受性,在45℃下的半衰期为270小时。此外,发现固定化酶在4℃储存时的保质期(定义为剩余初始活性的50%)达到65天。此外,固定在几丁质上的D - 海因酶可重复使用15次,转化率超过90%。总体而言,这说明了ChBD在酶固定化方面具有很大的实用性。

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