Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, People's Republic of China.
J Ind Microbiol Biotechnol. 2013 Feb;40(2):183-9. doi: 10.1007/s10295-012-1225-7. Epub 2013 Jan 10.
Heterologous protein expression using Pichia pastoris causes metabolic stress on the physiology of host cells, which may compromise the yields of secreted foreign proteins. Thus, understanding these metabolic stresses during secretory expression allows us to circumvent these undesirable effects. We investigated the effect of co-feeding two alternative carbon resources, sorbitol and yeast extract (YE), on the physiology of A3, a P. pastoris strain carrying 18 copies of the porcine insulin precursor (PIP) gene. Comparative transcriptional analysis was performed on 13 selected genes involved in important cellular processes. Results showed that co-feeding of either sorbitol or YE along with methanol improved the performance of A3. The co-feeding of YE enhanced the specific growth rate of A3 and the specific PIP productivity. However, the oxidative stress in the yeast cells increased. The co-feeding of methanol and sorbitol increased the specific growth rate of A3 but did not affect the specific PIP productivity. The transcriptional results suggested that sorbitol may have repressed the expression of foreign proteins. These observations will not only guide the application of mixed feeding strategies but also give a deeper understanding of the metabolic burden in the secretory expression of foreign proteins.
使用巴斯德毕赤酵母表达异源蛋白会对宿主细胞的生理造成代谢压力,这可能会降低分泌的外源蛋白的产量。因此,了解分泌表达过程中的这些代谢压力,使我们能够避免这些不良影响。我们研究了共喂养两种替代碳源——山梨醇和酵母提取物(YE)对携带 18 个猪胰岛素前体(PIP)基因的巴斯德毕赤酵母 A3 菌株生理的影响。对 13 个涉及重要细胞过程的选定基因进行了比较转录分析。结果表明,共喂养甲醇和山梨醇或 YE 均可改善 A3 的性能。YE 的共喂养提高了 A3 的比生长速率和特定 PIP 生产力。然而,酵母细胞中的氧化应激增加了。共喂养甲醇和山梨醇提高了 A3 的比生长速率,但不影响特定 PIP 的生产力。转录结果表明,山梨醇可能抑制了外源蛋白的表达。这些观察结果不仅将指导混合喂养策略的应用,还将深入了解外源蛋白分泌表达中的代谢负担。