ProteoNic BV, J.H. Oortweg 19-21, 2333 CH, Leiden, The Netherlands.
Institut für Molekulare Mikrobiologie und Biotechnologie, Westfälische Wilhelms-Universität Münster, Corrensstraße 3, 48149, Münster, Germany.
Microb Cell Fact. 2018 Jul 13;17(1):112. doi: 10.1186/s12934-018-0961-4.
The yeast Komagataella phaffii, better known as Pichia pastoris, is a commonly used host for recombinant protein production. Here expression vectors are reported that address the different steps of the transcription-translation-secretion pathway of heterologous protein production.
Transcription and translation enhancing elements were introduced in an expression cassette for the production of recombinant Aspergillus niger feruloyl esterase A. The yield was increased by threefold as compared to the yield without these elements. Multiple copy strains were selected using a zeocin resistance marker in the expression cassette and showed another sixfold higher yield. Modification of the C-terminal amino acid sequence of the secretion signal did not significantly improve the production yield. Similar data were obtained for the production of another protein, recombinant human interleukin 8. Upscaling to fed-batch fermentation conditions resulted in a twofold increase for reference strains, while for strains with enhancing elements a tenfold improvement was observed.
Pichia pastoris is used for recombinant protein production in industrial fermentations. By addressing the transcription and translation of mRNA coding for recombinant protein, significant yield improvement was obtained. The yield improvement obtained under microscale conditions was maintained under fed-batch fermentation conditions. These data demonstrate the potential of these expression vectors for large scale application as improved production of proteins has major implications on the economics and sustainability of biocatalyst dependent production processes e.g. for the production of pharmaceuticals and for the bioconversions of complex molecules.
酵母毕赤酵母(又名巴斯德毕赤酵母)是一种常用于重组蛋白生产的宿主。本文报道了可用于异源蛋白生产的转录-翻译-分泌途径不同步骤的表达载体。
为生产重组黑曲霉阿魏酸酯酶 A,在表达盒中引入了转录和翻译增强元件。与没有这些元件的表达相比,产量增加了三倍。使用表达盒中的博来霉素抗性标记物选择多拷贝菌株,产量又提高了六倍。对分泌信号的 C 末端氨基酸序列进行修饰并没有显著提高产量。对于另一种蛋白质——重组人白细胞介素 8 的生产,也得到了类似的数据。在分批补料发酵条件下放大规模,对照菌株的产量增加了两倍,而具有增强元件的菌株的产量提高了 10 倍。
毕赤酵母用于工业发酵中的重组蛋白生产。通过对编码重组蛋白的 mRNA 的转录和翻译进行优化,可显著提高产量。在微尺度条件下获得的产量提高在分批补料发酵条件下得以维持。这些数据表明,这些表达载体具有大规模应用的潜力,因为蛋白质产量的提高对依赖生物催化剂的生产过程的经济性和可持续性具有重大影响,例如药物生产和复杂分子的生物转化。