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大肠杆菌重组人生长激素包涵体溶解与复性的优化

Optimization of inclusion body solubilization and renaturation of recombinant human growth hormone from Escherichia coli.

作者信息

Patra A K, Mukhopadhyay R, Mukhija R, Krishnan A, Garg L C, Panda A K

机构信息

Product Development Cell, Gene Regulation Laboratory, National Institute of Immunology, Aruna Asaf Ali Marg, New Delhi, 110067, India.

出版信息

Protein Expr Purif. 2000 Mar;18(2):182-92. doi: 10.1006/prep.1999.1179.

Abstract

Recombinant human growth hormone (r-hGH) was expressed in Escherichia coli as inclusion bodies. In 10 h of fed-batch fermentation, 1.6 g/L of r-hGH was produced at a cell concentration of 25 g dry cell weight/L. Inclusion bodies from the cells were isolated and purified to homogeneity. Various buffers with and without reducing agents were used to solubilize r-hGH from the inclusion bodies and the extent of solubility was compared with that of 8 M urea as well as 6 M Gdn-HCl. Hydrophobic interactions as well as ionic interactions were found to be the dominant forces responsible for the formation of r-hGH inclusion bodies during its high-level expression in E. coli. Complete solubilization of r-hGH inclusion bodies was observed in 100 mM Tris buffer at pH 12.5 containing 2 M urea. Solubilization of r-hGH inclusion bodies in the presence of low concentrations of urea helped in retaining the existing native-like secondary structures of r-hGH, thus improving the yield of bioactive protein during refolding. Solubilized r-hGH in Tris buffer containing 2 M urea was found to be less susceptible to aggregation during buffer exchange and thus was refolded by simple dilution. The r-hGH was purified by use of DEAE-Sepharose ion-exchange chromatography and the pure monomeric r-hGH was finally obtained by using size-exclusion chromatography. The overall yield of the purified monomeric r-hGH was approximately 50% of the initial inclusion body proteins and was found to be biologically active in promoting growth of rat Nb2 lymphoma cell lines.

摘要

重组人生长激素(r-hGH)在大肠杆菌中表达为包涵体。在10小时的补料分批发酵中,细胞浓度为25 g干细胞重量/L时,r-hGH的产量为1.6 g/L。从细胞中分离出包涵体并纯化至同质。使用有无还原剂的各种缓冲液来溶解包涵体中的r-hGH,并将其溶解度与8 M尿素以及6 M盐酸胍的溶解度进行比较。发现疏水相互作用和离子相互作用是r-hGH在大肠杆菌中高水平表达期间形成包涵体的主要作用力。在含有2 M尿素的pH 12.5的100 mM Tris缓冲液中观察到r-hGH包涵体完全溶解。在低浓度尿素存在下r-hGH包涵体的溶解有助于保留r-hGH现有的天然二级结构,从而提高复性过程中生物活性蛋白的产量。发现在含有2 M尿素的Tris缓冲液中溶解的r-hGH在缓冲液交换过程中不易聚集,因此通过简单稀释进行复性。通过DEAE-琼脂糖离子交换色谱法纯化r-hGH,最终通过尺寸排阻色谱法获得纯的单体r-hGH。纯化的单体r-hGH的总产率约为初始包涵体蛋白的50%,并且在促进大鼠Nb2淋巴瘤细胞系生长方面具有生物活性。

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