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Impact of plasmid architecture on stability and yEGFP3 reporter gene expression in a set of isomeric multicopy vectors in yeast

机译:质粒结构对酵母中一组异构多拷贝载体的稳定性和yEGFP3报告基因表达的影响

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摘要

Multicopy episomal plasmids in yeast, used whenever elevated levels of foreign or homologous gene expression are necessary, are known to be less stable compared to the endogenous 2-μm plasmid they are based on, at least without selective pressure. Considering that rich medium favors growth rate and, simultaneously, is less expensive than selective medium, enhancing stability in non-selective medium is extremely desirable. In this study, we changed the architecture of a multicopy model expression plasmid, creating six isoforms (same size, same DNA content but different positions and orientations of the expression block) and studied mitotic stability, copy number, as well as reporter yEGFP3 expression between isoforms. With one isoform being significantly more stable than the others and another one exhibiting elevated plasmid copy numbers in rich medium, we show that consideration of the arrangement of the plasmid elements might be crucial for productivity employing Saccharomyces cerevisiae as a host. We strongly believe that the ideal architecture has to be assessed for each case and assembly strategy has to begin by evaluating the stability of the vector backbone before insertion of the desired gene. For the plasmid set studied, yEGFP3 reporter production depends more on mitotic stability than on elevated plasmid copy numbers in a small number of cells retaining the plasmid under non-selective conditions.
机译:已知酵母中的多拷贝游离型质粒在需要提高外源或同源基因表达水平时使用,与它们所基于的内源性2-μm质粒相比,至少在没有选择压力的情况下,稳定性较差。考虑到丰富的培养基有利于生长速率,并且同时比选择培养基便宜,因此非常需要增强非选择培养基的稳定性。在这项研究中,我们改变了多拷贝模型表达质粒的结构,创建了六种同工型(大小相同,DNA含量相同,但表达模块的位置和方向不同),并研究了有丝分裂稳定性,拷贝数以及报告子之间的yEGFP3表达亚型。一个同种型比其他同种型更加稳定,而另一个同种型在丰富的培养基中表现出更高的质粒拷贝数,我们表明,考虑酿酒酵母作为宿主,考虑质粒元素的排列对于生产力至关重要。我们坚信,必须针对每种情况评估理想的架构,并且必须在插入所需基因之前评估载体主链的稳定性来开始组装策略。对于所研究的质粒组,在非选择性条件下保留质粒的少数细胞中,yEGFP3报告基因的产生更多地取决于有丝分裂稳定性,而不是取决于质粒拷贝数升高。

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