通过补料分批培养从大肠杆菌包涵体中重组生产具有生物活性的鞍带石斑鱼生长激素。

Recombinant production of biologically active giant grouper (Epinephelus lanceolatus) growth hormone from inclusion bodies of Escherichia coli by fed-batch culture.

作者信息

Chung Wen-Jen, Huang Chi-Lung, Gong Hong-Yi, Ou Tsung-Yin, Hsu Jue-Liang, Hu Shao-Yang

机构信息

Department of Biological Science and Technology, National Pingtung University of Science and Technology, Pingtung, Taiwan.

Department of Aquaculture, National Taiwan Ocean University, Keelung, Taiwan.

出版信息

Protein Expr Purif. 2015 Jun;110:79-88. doi: 10.1016/j.pep.2015.02.012. Epub 2015 Feb 19.

Abstract

Growth hormone (GH) performs important roles in regulating somatic growth, reproduction, osmoregulation, metabolism and immunity in teleosts, and thus, it has attracted substantial attention in the field of aquaculture application. Herein, giant grouper GH (ggGH) cDNA was cloned into the pET28a vector and expressed in Shuffle® T7 Competent Escherichia coli. Recombinant N-terminal 6× His-tagged ggGH was produced mainly in insoluble inclusion bodies; the recombinant ggGH content reached 20% of total protein. For large-scale ggGH production, high-cell density E. coli culture was achieved via fed-batch culture with pH-stat. After 30h of cultivation, a cell concentration of 41.1g/l dry cell weight with over 95% plasmid stability was reached. Maximal ggGH production (4.0g/l; 22% total protein) was achieved via mid-log phase induction. Various centrifugal forces, buffer pHs and urea concentrations were optimized for isolation and solubilization of ggGH from inclusion bodies. Hydrophobic interactions and ionic interactions were the major forces in ggGH inclusion body formation. Complete ggGH inclusion body solubilization was obtained in PBS buffer at pH 12 containing 3M urea. Through a simple purification process including Ni-NTA affinity chromatography and refolding, 5.7mg of ggGH was obtained from 10ml of fed-batch culture (45% recovery). The sequence and secondary structure of the purified ggGH were confirmed by LC-MS/MS mass spectrometry and circular dichroism analysis. The cell proliferation-promoting activity was confirmed in HepG2, ZFL and GF-1 cells with the WST-1 colorimetric bioassay.

摘要

生长激素(GH)在硬骨鱼的体细胞生长、繁殖、渗透压调节、新陈代谢和免疫调节中发挥着重要作用,因此,它在水产养殖应用领域引起了广泛关注。在此,巨石斑鱼生长激素(ggGH)的cDNA被克隆到pET28a载体中,并在Shuffle® T7感受态大肠杆菌中表达。重组的N端带有6×His标签的ggGH主要以不溶性包涵体的形式产生;重组ggGH含量达到总蛋白的20%。为了大规模生产ggGH,通过pH值控制的补料分批培养实现了大肠杆菌的高密度培养。培养30小时后,细胞浓度达到41.1g/l干细胞重量,质粒稳定性超过95%。通过对数中期诱导实现了ggGH的最大产量(4.0g/l;占总蛋白的22%)。对各种离心力、缓冲液pH值和尿素浓度进行了优化,以从包涵体中分离和溶解ggGH。疏水相互作用和离子相互作用是ggGH包涵体形成的主要作用力。在含有3M尿素的pH 12的PBS缓冲液中可实现ggGH包涵体的完全溶解。通过包括Ni-NTA亲和层析和复性在内的简单纯化过程,从10ml补料分批培养物中获得了5.7mg的ggGH(回收率45%)。通过LC-MS/MS质谱分析和圆二色性分析确认了纯化的ggGH的序列和二级结构。通过WST-1比色法生物测定法在HepG2、ZFL和GF-1细胞中证实了其促进细胞增殖的活性。

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