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A novel method for genetic transformation of yeast cells using oligoelectrolyte polymeric nanoscale carriers

机译:一种利用低聚电解质纳米载体对酵母细胞进行遗传转化的新方法

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摘要

The genetic transformation of target cells is a key tool in modern biological research, as well as in many gene therapy and biotechnology applications. Here we describe a new method for delivery of DNA into several industrially important species of yeast, including Saccharomyces cerevisiae. Our method is based on the use of a novel nanoscale oligoelectrolyte polymer possessing a comb-like structure as a carrier molecule. Direct comparisons to standard transformation methods clearly show that our approach: (i) yields two times more transformants of Hansenula polymorpha NCYC 495 compared to electroporation approaches and 15 times more transformants compared to lithium acetate protocols, as well as (ii) 5 times more Pichia pastoris GS115 transformants compared to electroporation and 79 times more transformants compared to lithium acetate. Taken together, these results clearly indicate genetic transformation of yeasts using oligoelectrolyte polymer carriers is a highly effective means of gene delivery.
机译:目标细胞的遗传转化是现代生物学研究以及许多基因治疗和生物技术应用中的关键工具。在这里,我们描述了一种将DNA输送到几种工业上重要的酵母菌中的新方法,其中包括酿酒酵母。我们的方法基于使用具有梳状结构作为载体分子的新型纳米级低聚电解质聚合物。与标准转化方法的直接比较清楚地表明我们的方法:(i)与电穿孔方法相比,多形汉逊酵母NCYC 495的转化率高两倍,与乙酸锂方案相比,转化率高15倍,以及(ii)毕赤酵母高5倍pastoris GS115转化子与电穿孔相比,转化率是乙酸锂的79倍。综上所述,这些结果清楚地表明使用寡电解质聚合物载体对酵母进行遗传转化是基因传递的高效手段。

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