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Pichia pastoris Aft1 - a novel transcription factor, enhancing recombinant protein secretion

机译:巴斯德毕赤酵母Aft1-一种新型转录因子,可增强重组蛋白的分泌

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Background The methylotrophic yeast Pichia pastoris is frequently used for the production of recombinant proteins. However, expression levels can vary depending on the target protein. Allowing for simultaneous regulation of many genes, which may elicit a desired phenotype like increased protein production, overexpression of transcription factors can be used to overcome expression bottlenecks. Here, we present a novel P. pastoris transcription factor currently annotated as Aft1, activator of ferrous transport. Results The promoter regions of key secretory P. pastoris genes were screened for fungal transcription factor binding sites, revealing Aft1 as an interesting candidate for improving secretion. Genome wide analysis of transcription factor binding sites suggested Aft1 to be involved in the regulation of many secretory genes, but also indicated possible novel functions in carbohydrate metabolism. No Aft binding sites were found in promoters of characteristic iron homeostasis genes in P. pastoris. Microarrays were used to study the Aft1 regulon in detail, confirming Aft1 involvement in the regulation of carbon-responsive genes, and showing that iron regulation is dependent on FEP1, but not AFT1 expression levels. The positive effect of AFT1 overexpression on recombinant protein secretion was demonstrated for a carboxylesterase from Sphingopyxis sp. MTA144, for which secretion was improved 2.5-fold in fed batch bioreactor cultivations. Conclusion This study demonstrates that the transcription factor Aft1 can be used to improve recombinant protein secretion in P. pastoris. Furthermore, we discovered possible novel functions of Aft1 in carbohydrate metabolism and provide evidence arguing against a direct role of Aft1 in P. pastoris iron regulation.
机译:背景技术甲基营养酵母巴斯德毕赤酵母经常用于生产重组蛋白。但是,表达水平可以根据靶蛋白而变化。允许同时调节可能引发所需表型(如增加蛋白质产量)的许多基因,转录因子的过表达可用于克服表达瓶颈。在这里,我们介绍了一个新的巴斯德毕赤酵母转录因子,目前被称为Aft1,铁转运的激活剂。结果筛选了关键分泌型巴斯德毕赤酵母基因的启动子区域中的真菌转录因子结合位点,揭示了Aft1是改善分泌的有趣候选物。转录因子结合位点的全基因组分析表明,Aft1参与了许多分泌基因的调控,但也表明碳水化合物代谢中可能存在新的功能。在巴斯德毕赤酵母中特征性铁稳态基因的启动子中未发现Aft结合位点。微阵列用于详细研究Aft1调节子,证实Aft1参与碳响应基因的调节,并显示铁调节依赖于FEP1,但不依赖于AFT1表达水平。证实了AFT1过表达对重组蛋白分泌的积极作用是针对Sphingopyxis sp。的一种羧酸酯酶。 MTA144,在分批补料生物反应器培养中,其分泌提高了2.5倍。结论这项研究表明,转录因子Aft1可用于改善巴斯德毕赤酵母中的重组蛋白分泌。此外,我们发现了Aft1在碳水化合物代谢中的可能新功能,并提供了证据反对Aft1在巴斯德毕赤酵母铁调节中的直接作用。

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