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Directed gene copy number amplification in Pichia pastoris by vector integration into the ribosomal DNA locus

机译:通过载体整合入核糖体DNA基因座中的巴斯德毕赤酵母中的定向基因拷贝数扩增

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摘要

The yeast Pichia pastoris is a widely used host organism for heterologous protein production. One of the basic steps for strain improvement is to ensure a sufficient level of transcription of the heterologous gene, based on promoter strength and gene copy number. To date, high-copy-number integrants of P. pastoris are achievable only by screening of random events or by cloning of gene concatemers. Methods for rapid and reliable multicopy integration of the expression cassette are therefore desirable. Here we present such a method based on vector integration into the rDNA locus and post-transformational vector amplification by repeated selection on increased antibiotic concentrations. Data are presented for two exemplary products: human serum albumin, which is secreted into the supernatant, and human superoxide dismutase, which is accumulated in the cytoplasm of the cells. The striking picture evolving is that intracellular protein production is tightly correlated with gene copy number, while use of the secretory pathway introduces a high clonal variability and the correlation with gene copy number is valid only for low gene copy numbers.
机译:酵母巴斯德毕赤酵母是用于异源蛋白质生产的广泛使用的宿主生物。菌株改良的基本步骤之一是基于启动子强度和基因拷贝数,确保异源基因足够水平的转录。迄今为止,巴斯德毕赤酵母的高拷贝数整合体只能通过随机事件的筛选或基因连接体的克隆来实现。因此,需要用于表达盒的快速和可靠的多拷贝整合的方法。在这里,我们提出了一种基于将载体整合到rDNA基因座中以及通过反复选择增加的抗生素浓度来进行转化后载体扩增的方法。给出了两个示例性产品的数据:分泌到上清液中的人血清白蛋白,和积累在细胞质中的人超氧化物歧化酶。惊人的变化是细胞内蛋白质的产生与基因拷贝数紧密相关,而分泌途径的使用导致克隆变异性高,与基因拷贝数的相关性仅对低基因拷贝数有效。

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