Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, 214122, China.
Appl Biochem Biotechnol. 2013 Dec;171(7):1792-804. doi: 10.1007/s12010-013-0423-8. Epub 2013 Sep 3.
A constitutive expression vector for rhIL-2-HSA fusion protein production in yeast Pichia pastoris was constructed. The coding gene was placed in frame with the Saccharomyces cerevisiae α-factor secretion signal sequence under the control of the GAP promoter. The recombinant plasmid pGAPZαA-rhIL-2-HSA was integrated into the genome of the P. pastoris GS115. The effect of different carbon sources on rhIL-2-HSA fusion protein expression was evaluated in shaking flask cultures. We found that recombinant P. pastoris grew well and efficiently secreted rhIL-2-HSA fusion protein into the medium when using glucose as carbon source. To achieve higher production, the influence of initial pH and culture temperature was also evaluated. Fed-batch fermentation strategy using glucose as carbon source for constitutive expression of rhIL-2-HSA fusion protein was investigated in 5-L bioreactor and the expression level of rhIL-2-HSA could reach about 250 mg/L after 60-h fermentation. The rhIL-2-HSA fusion protein produced by this constitutive expression system was purified and exhibited a specific bioactivity of 1.040 × 10(6) IU/mg in vitro. This study described constitutive expression of rhIL-2-HSA fusion protein by P. pastoris and development of a simple high-cell density fermentation strategy for biologically active rhIL-2-HSA fusion protein using glucose as sole carbon source.
构建了用于在毕赤酵母中生产 rhIL-2-HSA 融合蛋白的组成型表达载体。该编码基因与酿酒酵母α因子分泌信号序列融合,并在 GAP 启动子的控制下表达。重组质粒 pGAPZαA-rhIL-2-HSA 整合到毕赤酵母 GS115 的基因组中。在摇瓶培养中评估了不同碳源对 rhIL-2-HSA 融合蛋白表达的影响。我们发现,当使用葡萄糖作为碳源时,重组毕赤酵母生长良好,并能有效地将 rhIL-2-HSA 融合蛋白分泌到培养基中。为了获得更高的产量,还评估了初始 pH 值和培养温度的影响。在 5-L 生物反应器中,采用葡萄糖作为碳源的补料分批发酵策略对 rhIL-2-HSA 融合蛋白的组成型表达进行了研究,发酵 60 小时后 rhIL-2-HSA 的表达水平可达到约 250mg/L。该组成型表达系统产生的 rhIL-2-HSA 融合蛋白经纯化后,在体外具有 1.040×10(6)IU/mg 的特定生物活性。本研究描述了毕赤酵母中 rhIL-2-HSA 融合蛋白的组成型表达,并开发了一种简单的高密度发酵策略,使用葡萄糖作为唯一碳源生产具有生物活性的 rhIL-2-HSA 融合蛋白。