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High-yield production of difficult-to-express proteins in a continuous exchange cell-free system based on CHO cell lysates

机译:在基于CHO细胞裂解物的连续无细胞交换系统中高产量生产难于表达的蛋白质

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摘要

Cell-free protein synthesis (CFPS) represents a promising technology for efficient protein production targeting especially so called “difficult-to-express” proteins whose synthesis is challenging in conventional in vivo protein production platforms. Chinese hamster ovary (CHO) cells are one of the most prominent and safety approved cell lines for industrial protein production. In this study we demonstrated the ability to produce high yields of various protein types including membrane proteins and single chain variable fragments (scFv) in a continuous exchange cell-free (CECF) system based on CHO cell lysate that contains endogenous microsomal structures. We showed significant improvement of protein yield compared to batch formatted reactions and proved biological activity of synthesized proteins using various analysis technologies. Optimized CECF reaction conditions led to membrane protein yields up to 980 µg/ml, which is the highest protein yield reached in a microsome containing eukaryotic cell-free system presented so far.
机译:无细胞蛋白质合成(CFPS)代表着一种有前途的技术,可有效靶向蛋白质,尤其是所谓的“难于表达”的蛋白质,其合成在常规体内蛋白质生产平台中具有挑战性。中国仓鼠卵巢(CHO)细胞是用于工业蛋白质生产的最杰出和最安全的细胞系之一。在这项研究中,我们证明了基于包含内源性微粒体结构的CHO细胞裂解物,在连续交换无细胞(CECF)系统中能够产生高产量的各种蛋白质类型的能力,包括膜蛋白和单链可变片段(scFv)。与分批格式化反应相比,我们显示了蛋白质产量的显着提高,并使用各种分析技术证明了合成蛋白质的生物活性。优化的CECF反应条件导致膜蛋白产量高达980μg/ ml,这是迄今为止所提出的含真核无细胞系统的微粒体中达到的最高蛋白产量。

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