Eukaryotic Molecular Cell Biology, Section for Eukaryotic Biotechnology, Department of Systems Biology, Technical University of Denmark, Søltofts Plads, Building 223, 2800 Kongens Lyngby, Denmark.
DynaMo Center, Department of Plant and Environmental Sciences, University of Copenhagen, Thorvaldsensvej 40, 1871 Frederiksberg C, Denmark.
Sci Rep. 2017 Jan 30;7:41431. doi: 10.1038/srep41431.
Over-expression of a gene by increasing its copy number is often desirable in the model yeast Saccharomyces cerevisiae. It may facilitate elucidation of enzyme functions, and in cell factory design it is used to increase production of proteins and metabolites. Current methods are typically exploiting expression from the multicopy 2 μ-derived plasmid or by targeting genes repeatedly into sequences like Ty or rDNA; in both cases, high gene expression levels are often reached. However, with 2 μ-based plasmid expression, the population of cells is very heterogeneous with respect to protein production; and for integration into repeated sequences it is difficult to determine the genetic setup of the resulting strains and to achieve specific gene doses. For both types of systems, the strains often suffer from genetic instability if proper selection pressure is not applied. Here we present a gene amplification system, CASCADE, which enables construction of strains with defined gene copy numbers. One or more genes can be amplified simultaneously and the resulting strains can be stably propagated on selection-free medium. As proof-of-concept, we have successfully used CASCADE to increase heterologous production of two fluorescent proteins, the enzyme β-galactosidase the fungal polyketide 6-methyl salicylic acid and the plant metabolite vanillin glucoside.
在模式酵母酿酒酵母中,通过增加基因拷贝数来过度表达基因通常是可取的。这有助于阐明酶的功能,在细胞工厂设计中,它被用于增加蛋白质和代谢物的产量。目前的方法通常利用来自多拷贝 2μ 衍生质粒的表达,或通过将基因靶向重复序列,如 Ty 或 rDNA;在这两种情况下,通常可以达到高的基因表达水平。然而,使用基于 2μ 的质粒表达,细胞群体在蛋白质生产方面非常异质;对于整合到重复序列中,很难确定产生的菌株的遗传设置,并实现特定的基因剂量。对于这两种类型的系统,如果不施加适当的选择压力,菌株通常会遭受遗传不稳定性。我们在这里提出了一个基因扩增系统 CASCADE,它可以构建具有定义基因拷贝数的菌株。一个或多个基因可以同时扩增,并且可以在无选择压力的培养基上稳定繁殖。作为概念验证,我们已经成功地使用 CASCADE 增加了两种荧光蛋白、酶β-半乳糖苷酶、真菌聚酮体 6-甲基水杨酸和植物代谢物香草素葡萄糖苷的异源生产。