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High-level expression and purification of soluble bioactive recombinant human heparin-binding epidermal growth factor in Escherichia coli

机译:可溶性生物活性重组人肝素结合表皮生长因子在大肠杆菌中的高水平表达和纯化

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Heparin-binding epidermal growth factor (HB-EGF) is a member of highly conserved superfamily of proteins that has potential mitogenic activity and stimulates differentiation and migration of various cell types. Since HB-EGF has three intra-molecular disulfide bonds, a high expression pattern of active HB-EGF in an E. coli expression system was not successfully established. The aim of this study was to increase production of soluble bioactive recombinant human HB-EGF in E. coli by modifying growth conditions and codon optimization. The open reading frame codons of human HB-EGF were optimized to achieve high level expression in E. coli. The optimized codon was amplified, cloned into plasmid pET-32a, and transformed into E. coli BL21 for further expression. The cultivation parameters (temperature and inducer) were optimized to produce a high yield of soluble HB-EGF. The fusion protein was purified by Nickel-nitrilotriacetic acid (Ni-NTA) affinity chromatography. Amethylthiazole tetrazolium assay was used to evaluate the bioactivity of the produced recombinant protein. After codon optimization, the codon adaptation index (CAI) was increased from 0.255 in native gene to 0.829 using the optimized sequence. By lowering the temperature to 22 degrees C and the inducer to 0.4M, we obtained 35% soluble expression of recombinant and biologically active human HB-EGF. Our data demonstrate that codon optimization increases the yield of HB-EGF in an E. coli expression system. Furthermore, the chosen modifications in cell culturing increase the solubility of recombinant human HB-EGF.
机译:肝素结合表皮生长因子(HB-EGF)是高度保守的蛋白质超家族的成员,该家族具有潜在的促有丝分裂活性,并刺激各种细胞类型的分化和迁移。由于HB-EGF具有三个分子内二硫键,因此未能成功建立大肠杆菌表达系统中活性HB-EGF的高表达模式。这项研究的目的是通过改变生长条件和优化密码子来增加大肠杆菌中可溶性生物活性重组人HB-EGF的产量。人HB-EGF的开放阅读框密码子被优化以在大肠杆菌中实现高水平表达。扩增优化的密码子,克隆到质粒pET-32a中,并转化到大肠杆菌BL21中以进一步表达。优化了培养参数(温度和诱导剂)以产生高产率的可溶性HB-EGF。融合蛋白通过镍-三氮乙酸(Ni-NTA)亲和层析纯化。甲基噻唑四唑鎓测定法用于评估产生的重组蛋白的生物活性。密码子优化后,使用优化的序列,密码子适应指数(CAI)从天然基因中的0.255提高到0.829。通过将温度降低到22摄氏度,将诱导剂降低到0.4M,我们获得了35%的重组和具有生物活性的人HB-EGF可溶性表达。我们的数据表明,密码子优化可提高大肠杆菌表达系统中HB-EGF的产量。此外,细胞培养中所选择的修饰增加了重组人HB-EGF的溶解度。

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