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Pichia pastoris protease‐deficient and auxotrophic strains generated by a novel user‐friendly vector toolbox for gene deletion

机译:一种新型易于使用的载体工具箱产生的巴斯德毕赤酵母蛋白酶缺陷型和营养缺陷型菌株用于基因缺失

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摘要

Targeted gene knockouts play an important role in the study of gene function. For the generation of knockouts in the industrially important yeast Pichia pastoris, several protocols have been published to date. Nevertheless, creating a targeted knockout in P. pastoris still is a time‐consuming process, as the existing protocols are labour intensive and/or prone to accumulate nucleotide mutations. In this study, we introduce a novel, user‐friendly vector‐based system for the generation of targeted knockouts in P. pastoris. Upon confirming the successful knockout, respective selection markers can easily be recycled. Excision of the marker is mediated by Flippase (Flp) recombinase and occurs at high frequency (≥95%). We validated our knockout system by deleting 20 (confirmed and putative) protease genes and five genes involved in biosynthetic pathways. For the first time, we describe gene deletions of PRO3 and PHA2 in P. pastoris, genes involved in proline, and phenylalanine biosynthesis, respectively. Unexpectedly, knockout strains of PHA2 did not display the anticipated auxotrophy for phenylalanine but rather showed a bradytroph phenotype on minimal medium hinting at an alternative but less efficient pathway for production of phenylalanine exists in P. pastoris. Overall, all knockout vectors can easily be adapted to the gene of interest and strain background by efficient exchange of target homology regions and selection markers in single cloning steps. Average knockout efficiencies for all 25 genes were shown to be 40%, which is comparably high.
机译:靶向基因敲除在基因功能的研究中起着重要作用。为了在工业上重要的酵母毕赤酵母中产生敲除,迄今为止已公开了几种方案。尽管如此,由于现有的实验方案劳动强度大和/或易于积累核苷酸突变,因此在P.pastoris中建立有针对性的基因敲除仍然是一个耗时的过程。在这项研究中,我们介绍了一种新颖的,基于用户友好的矢量的系统,用于在P.pastoris中生成靶向的基因敲除。确认成功敲除后,可以轻松回收各个选择标记。标记的切除是由Flippase(Flp)重组酶介导的,且发生频率高(≥95%)。我们通过删除20个(确认的和推定的)蛋白酶基因和5个参与生物合成途径的基因来验证我们的敲除系统。第一次,我们描述了番茄假单胞菌PRO3和PHA2的基因缺失,分别涉及脯氨酸和苯丙氨酸生物合成的基因。出乎意料的是,PHA2的敲除菌株未显示出预期的苯丙氨酸营养缺陷,而是在最小培养基上显示了下营养型表型,提示在食肉毕赤酵母中存在另一种但效率较低的生产苯丙氨酸的途径。总体而言,通过在单个克隆步骤中有效交换靶同源区和选择标记,所有敲除载体都可以轻松适应目标基因和菌株背景。所有25个基因的平均敲除效率均显示为40%,相对较高。

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