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利用葡萄糖作为碳源,毕赤酵母中组成型表达 rhIL-2-HSA 融合蛋白。

Constitutive expression of a rhIL-2-HSA fusion protein in Pichia pastoris using glucose as carbon source.

机构信息

Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, 214122, China.

出版信息

Appl Biochem Biotechnol. 2013 Dec;171(7):1792-804. doi: 10.1007/s12010-013-0423-8. Epub 2013 Sep 3.

Abstract

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.

摘要

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。

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