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无血清悬浮培养的HEK293 EBNA1细胞的大规模瞬时转染:蛋白胨添加剂可改善细胞生长和转染效率。

Large-scale transient transfection of serum-free suspension-growing HEK293 EBNA1 cells: peptone additives improve cell growth and transfection efficiency.

作者信息

Pham Phuong Lan, Perret Sylvie, Doan Huyen Chau, Cass Brian, St-Laurent Gilles, Kamen Amine, Durocher Yves

机构信息

Animal Cell Technology Group, Bioprocess Platform, Biotechnology Research Institute, National Research Council Canada, 6100 Royalmount Avenue, Montreal, Canada H4P 2R2.

出版信息

Biotechnol Bioeng. 2003 Nov 5;84(3):332-42. doi: 10.1002/bit.10774.

Abstract

Large-scale transient transfection of mammalian cells is a recent and powerful technology for the fast production of milligram amounts of recombinant proteins (r-proteins). As many r-proteins used for therapeutic and structural studies are naturally secreted or engineered to be secreted, a cost-effective serum-free culture medium that allows their efficient expression and purification is required. In an attempt to design such a serum-free medium, the effect of nine protein hydrolysates on cell proliferation, transfection efficiency, and volumetric productivity was evaluated using green fluorescent protein (GFP) and human placental secreted alkaline phosphate (SEAP) as reporter genes. The suspension growing, serum-free adapted HEK293SF-3F6 cell line was stably transfected with an EBNA1-expression vector to increase protein expression when using EBV oriP bearing plasmids. Compared to our standard serum-free medium, concomitant addition of the gelatin peptone N3 and removal of BSA slightly enhanced transfection efficiency and significantly increased volumetric productivity fourfold. Using the optimized medium formulation, transfection efficiencies between 40-60% were routinely obtained and SEAP production reached 18 mg/L(-1). To date, we have successfully produced and purified over fifteen r-proteins from 1-14-L bioreactors using this serum-free system. As examples, we describe the scale-up of two secreted his-tagged r-proteins Tie-2 and Neuropilin-1 extracellular domains (ED) in bioreactors. Each protein was successfully purified to >95% purity following a single immobilized metal affinity chromatography (IMAC) step. In contrast, purification of Tie-2 and Neuropilin-1 produced in serum-containing medium was much less efficient. Thus, the use of our new serum-free EBNA1 cell line with peptone-enriched serum-free medium significantly improves protein expression compared to peptone-less medium, and significantly increases their purification efficiency compared to serum-containing medium. This eliminates labor-intensive and expensive chromatographic steps, and allows for the simple, reliable, and extremely fast production of milligram amounts of r-proteins within 5 days posttransfection.

摘要

哺乳动物细胞的大规模瞬时转染是一项新兴的强大技术,可快速生产毫克级的重组蛋白(r蛋白)。由于许多用于治疗和结构研究的r蛋白是天然分泌的或经过工程改造后可分泌的,因此需要一种经济高效的无血清培养基,以实现其高效表达和纯化。为了设计这样一种无血清培养基,我们使用绿色荧光蛋白(GFP)和人胎盘分泌碱性磷酸酶(SEAP)作为报告基因,评估了九种蛋白水解物对细胞增殖、转染效率和体积生产力的影响。将悬浮生长、适应无血清的HEK293SF-3F6细胞系用EBNA1表达载体稳定转染,以便在使用携带EBV oriP的质粒时提高蛋白表达。与我们的标准无血清培养基相比,同时添加明胶蛋白胨N3并去除牛血清白蛋白(BSA)可略微提高转染效率,并使体积生产力显著提高四倍。使用优化后的培养基配方,常规转染效率可达40%-60%,SEAP产量达到18 mg/L。迄今为止,我们已使用该无血清系统在1-14 L生物反应器中成功生产并纯化了超过十五种r蛋白。作为示例,我们描述了两种分泌型His标签r蛋白——Tie-2和神经纤毛蛋白-1细胞外结构域(ED)在生物反应器中的放大生产。每种蛋白在经过单步固定化金属亲和色谱(IMAC)后,均成功纯化至纯度>95%。相比之下,在含血清培养基中生产的Tie-2和神经纤毛蛋白-1的纯化效率要低得多。因此,与不含蛋白胨的培养基相比,使用我们新的无血清EBNA1细胞系和富含蛋白胨的无血清培养基可显著提高蛋白表达,并且与含血清培养基相比,可显著提高其纯化效率。这省去了劳动强度大且昂贵的色谱步骤,并允许在转染后5天内简单、可靠且极快速地生产毫克级的r蛋白。

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