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通过共表达细菌血红蛋白提高大肠杆菌中贻贝粘附蛋白的产量。

Enhancement of mussel adhesive protein production in Escherichia coli by co-expression of bacterial hemoglobin.

作者信息

Kim Doil, Hwang Dong Soo, Kang Dong Gyun, Kim Jaoon Y H, Cha Hyung Joon

机构信息

Department of Chemical Engineering, Pohang University of Science and Technology, Pohang 790-784, Korea.

出版信息

Biotechnol Prog. 2008 May-Jun;24(3):663-6. doi: 10.1021/bp0703477. Epub 2008 Apr 9.

Abstract

Mussel adhesive proteins (MAPs) have been considered as potential underwater and medical bioadhesives. Previously, we reported a functional expression of recombinant MAP hybrid fp-151, which is a fusion protein with six type 1 (fp-1) decapeptide repeats at each type 5 (fp-5) terminus, with practical properties in Escherichia coli. In the present work, we introduced the Vitreoscilla hemoglobin (VHb) co-expression strategy to enhance the production levels of hybrid fp-151 since VHb has been successfully used for efficient oxygen utilization in several expression systems, including E. coli. In both batch-type flask and fed-batch-type bioreactor cultures, we found that co-expression of VHb conferred higher cell growth and hybrid fp-151 production. Its positive effects were significantly increased in high cell density bioreactor cultures as the microaerobic environment was more quickly and severely formed. We obtained a approximately 1.9-fold higher (approximately 1 g/L) production of MAP fp-151 from VHb co-expressing cells in fed-batch bioreactor cultures as compared to that from VHb non-expressing cells. Collectively and regardless of the culture type, VHb co-expression strategy was successful in enhancing the production of recombinant mussel adhesive proteins in the E. coli expression system.

摘要

贻贝粘附蛋白(MAPs)被认为是潜在的水下和医用生物粘合剂。此前,我们报道了重组MAP杂交蛋白fp - 151的功能性表达,它是一种在每个5型(fp - 5)末端带有六个1型(fp - 1)十肽重复序列的融合蛋白,在大肠杆菌中具有实际应用特性。在本研究中,我们引入了透明颤菌血红蛋白(VHb)共表达策略来提高杂交蛋白fp - 151的产量,因为VHb已成功用于包括大肠杆菌在内的几种表达系统中的高效氧气利用。在分批式摇瓶培养和补料分批式生物反应器培养中,我们发现VHb的共表达赋予了更高的细胞生长和杂交蛋白fp - 151产量。随着微需氧环境更快、更严重地形成,其积极作用在高细胞密度生物反应器培养中显著增强。与不表达VHb的细胞相比,在补料分批式生物反应器培养中,我们从共表达VHb的细胞中获得的MAP fp - 151产量提高了约1.9倍(约1 g/L)。总体而言,无论培养类型如何,VHb共表达策略成功提高了大肠杆菌表达系统中重组贻贝粘附蛋白的产量。

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