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功能性重组贻贝粘附蛋白3A在大肠杆菌中的表达。

Expression of functional recombinant mussel adhesive protein type 3A in Escherichia coli.

作者信息

Hwang Dong Soo, Gim Youngsoo, Cha Hyung Joon

机构信息

Department of Chemical Engineering and Division of Molecular and Life Sciences, Pohang University of Science and Technology, Pohang 790-784, Korea.

出版信息

Biotechnol Prog. 2005 May-Jun;21(3):965-70. doi: 10.1021/bp050014e.

Abstract

Mussel adhesive proteins, including the 20-plus variants of foot protein type 3 (fp-3), have been suggested as potential environmentally friendly adhesives for use in aqueous conditions and in medicine. Here we report the novel production of a recombinant Mytilus galloprovincialis foot protein type 3 variant A (Mgfp-3A) fused with a hexahistidine affinity ligand in Escherichia coli and its approximately 99% purification with affinity chromatography. Recombinant Mgfp-3A showed a superior purification yield and better apparent solubility in 5% acetic acid (prerequisites for large-scale production and practical use) compared to those of the previously reported recombinant M. galloprovincialis foot protein type 5 (Mgfp-5). The adsorption abilities and adhesion forces of purified recombinant Mgfp-3A were compared with those of Cell-Tak (a commercial mussel extract adhesive) and recombinant Mgfp-5 using quartz crystal microbalance analysis and modified atomic force microscopy, respectively. These assays showed that the adhesive ability of recombinant Mgfp-3A was comparable to that of Cell-Tak but lower than that of recombinant Mgfp-5. Collectively, these results indicate that recombinant Mgfp-3A may be useful as a commercial bioadhesive or an adhesive ingredient in medical or underwater environments.

摘要

贻贝粘附蛋白,包括20多种足蛋白3型(fp-3)变体,已被认为是在水性条件和医学中使用的潜在环保型粘合剂。在此,我们报告了在大肠杆菌中新型生产与六组氨酸亲和配体融合的重组地中海贻贝足蛋白3型变体A(Mgfp-3A),并通过亲和色谱法对其进行了约99%的纯化。与先前报道的重组地中海贻贝足蛋白5型(Mgfp-5)相比,重组Mgfp-3A在5%乙酸中显示出更高的纯化产率和更好的表观溶解度(大规模生产和实际应用的前提条件)。分别使用石英晶体微天平分析和改进的原子力显微镜,将纯化的重组Mgfp-3A的吸附能力和粘附力与Cell-Tak(一种商业贻贝提取物粘合剂)和重组Mgfp-5进行了比较。这些分析表明,重组Mgfp-3A的粘附能力与Cell-Tak相当,但低于重组Mgfp-5。总体而言,这些结果表明重组Mgfp-3A可用作医疗或水下环境中的商业生物粘合剂或粘合剂成分。

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