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首页> 外文期刊>Scientific reports. >Increased dosage of AOX1 promoter-regulated expression cassettes leads to transcription attenuation of the methanol metabolism in Pichia pastoris
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Increased dosage of AOX1 promoter-regulated expression cassettes leads to transcription attenuation of the methanol metabolism in Pichia pastoris

机译:增加AOX1启动子调节的表达盒的剂量导致哌啶代谢在毕赤酵母中的转录衰减

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摘要

The methanol-regulated alcohol oxidase promoter (PAOX1) of Pichia pastoris is one of the strongest promoters for heterologous gene expression in this methylotrophic yeast. Although increasing gene dosage is one of the most common strategies to increase recombinant protein productivities, the increase of gene dosage of Rhizopus oryzae lipase (ROL) in P. pastoris has been previously shown to reduce cell growth, lipase production and substrate consumption in high-copy strains. To better assess that physiological response, transcriptomics analysis was performed of a subset of strains with 1 to 15 ROL copies. The macroscopic physiological parameters confirm that growth yield and carbon uptake rate are gene dosage dependent, and were supported by the transcriptomic data, showing the impact of increased dosage of AOX1 promoter-regulated expression cassettes on P. pastoris physiology under steady methanolic growth conditions. Remarkably, increased number of cassettes led to transcription attenuation of the methanol metabolism and peroxisome biogenesis in P. pastoris, concomitant with reduced secretion levels of the heterologous product. Moreover, our data also point to a block in ROL mRNA translation in the higher ROL-copies constructs, while the low productivities of multi-copy strains under steady growth conditions do not appear to be directly related to UPR and ERAD induction.
机译:甲醇调节的甲醇氧化酶启动子(Paox1)的吡啶牧场是在该甲基营养酵母中的异源基因表达中最强的启动子之一。虽然增加基因剂量是增加重组蛋白质产品的最常见的策略之一,但先前已经显示了P. Pastoris中的Rhizopus Oryzae脂肪酶(ROL)基因剂量的增加,以降低细胞生长,脂肪酶生产和高底物消耗复制菌株。为了更好地评估生理反应,对具有1至15 rol拷贝的菌株的子集进行转录组科分析。宏观生理参数证实,生长产量和碳摄取率是基因剂量依赖性,并且由转录组数据负载,表明在稳定的甲醇生长条件下,Ax1启动子调节表达盒的增加剂量增加的含量增加。值得注意的是,盒数量增加导致甲醇代谢的转录衰减和在P. Pastoris中的过氧化物生物发生,伴随着异源产品的分泌水平降低。此外,我们的数据还指向较高rol-拷贝构建体中的Rol mRNA翻译中的嵌段,而在稳定生长条件下的多拷贝菌株的低产量似乎与UPR和Erad诱导无关。

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