Hohnholz Ruben, Achstetter Tilman
City University of Applied Sciences Bremen, Department of Industrial Microbiology, D-28199 Bremen, Neustadtswall 30, Germany.
FEMS Yeast Res. 2019 Feb 11. doi: 10.1093/femsre/foz001.
Flp-mediated site specific intramolecular recombination in Saccharomyces cerevisiae is considered responsible for amplification of the endogenous 2µm plasmid. For YEp-type vectors, a similar mechanism can be imagined by which such plasmids achieve high copy numbers, a trait desired for many research applications and necessary for industrial production. We have cultivated yeast carrying one of six isomeric YEp-type model expression plasmids under two different conditions and back transformed the shuttle vectors into Escherichia coli. Our analysis of 586 ampR clones represents a high resolution snapshot of plasmid forms present in the transformed yeast cells with a detection limit of structural changes of < 2%. Altered forms summed up to about 11%, constituting likely a lower limit. We have observed two categories of recombination events. One is Flp based, with products of intermolecular recombination with the 2µm, likely intermediates that are prerequisites for YEp-type plasmid amplification. The other type is based on Flp-independent homologous recombination leading to oligomerization of such plasmids also in a 2µm-free [cir°] strain, i.e. in the absence of Flp. Beyond the general maintenance and its functional sequences, only the gene of interest and its expression might have an impact on the physiology of the host.
在酿酒酵母中,Flp介导的位点特异性分子内重组被认为是内源性2μm质粒扩增的原因。对于YEp型载体,可以想象一种类似的机制,通过这种机制此类质粒可实现高拷贝数,这是许多研究应用所期望的特性,也是工业生产所必需的。我们在两种不同条件下培养了携带六种异构YEp型模型表达质粒之一的酵母,并将穿梭载体回转化到大肠杆菌中。我们对586个氨苄青霉素抗性克隆的分析代表了转化酵母细胞中存在的质粒形式的高分辨率快照,其结构变化的检测限<2%。改变的形式总计约为11%,这可能构成下限。我们观察到两类重组事件。一类是基于Flp的,其产物是与2μm的分子间重组,可能是YEp型质粒扩增的先决条件的中间体。另一类是基于不依赖Flp的同源重组,导致此类质粒在无2μm [cir°]菌株中(即在没有Flp的情况下)也发生寡聚化。除了一般的维持及其功能序列外,只有目的基因及其表达可能会对宿主的生理学产生影响。