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A streamlined implementation of the glutamine synthetase-based protein expression system

机译:基于谷氨酰胺合成酶的蛋白质表达系统的简化实现

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Background The glutamine synthetase-based protein expression system is widely used in industry and academia for producing recombinant proteins but relies on the cloning of transfected cells, necessitating substantial investments in time and handling. We streamlined the production of protein-producing cultures of Chinese hamster ovary cells using this system by co-expressing green fluorescent protein from an internal ribosomal entry site and selecting for high green fluorescent protein-expressing cells using fluorescence-activated cell sorting. Results Whereas other expression systems utilizing green fluorescent protein and fluorescence-activated cell sorting-based selection have relied on two or more sorting steps, we obtained stable expression of a test protein at levels >50% of that of an “average” clone and ~40% that of the “best” clone following a single sorting step. Versus clone-based selection, the principal savings are in the number of handling steps (reduced by a third), handling time (reduced by 70%), and the time needed to produce protein-expressing cultures (reduced by ~3 weeks). Coupling the glutamine synthetase-based expression system with product-independent selection in this way also facilitated the production of a hard-to-assay protein. Conclusion Utilizing just a single fluorescence-activated cell sorting-based selection step, the new streamlined implementation of the glutamine synthetase-based protein expression system offers protein yields sufficient for most research purposes, where
机译:背景技术基于谷氨酰胺合成酶的蛋白质表达系统在工业和学术界广泛用于生产重组蛋白质,但是依赖于转染细胞的克隆,因此需要大量的时间和处理费用。我们通过从内部核糖体进入位点共表达绿色荧光蛋白,并使用荧光激活的细胞分选方法选择表达高绿色荧光蛋白的细胞,从而简化了使用该系统生产中国仓鼠卵巢蛋白质的培养过程。结果尽管利用绿色荧光蛋白和基于荧光激活细胞分选的其他表达系统依赖于两个或多个分选步骤,但我们获得的测试蛋白的稳定表达水平大于“平均”克隆水平的50%,而〜只需一个排序步骤,即可获得“最佳”克隆的40%。与基于克隆的选择相比,主要节省的是处理步骤(减少了三分之一),处理时间(减少了70%)和生产表达蛋白质的培养物所需的时间(减少了约3周)。以这种方式将基于谷氨酰胺合成酶的表达系统与不依赖产物的选择相结合,也促进了难以测定的蛋白质的产生。结论仅使用了一个基于荧光激活细胞分选的选择步骤,基于谷氨酰胺合成酶的蛋白质表达系统的新型简化实现就可以为大多数研究目的提供足够的蛋白质产量,其中

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