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Targeted Toxin-Based Selectable Drug-Free Enrichment of Mammalian Cells with High Transgene Expression

机译:靶向毒素的高转基因表达的哺乳动物细胞的选择性无毒富集

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摘要

Almost all transfection protocols for mammalian cells use a drug resistance gene for the selection of transfected cells. However, it always requires the characterization of each isolated clone regarding transgene expression, which is time-consuming and labor-intensive. In the current study, we developed a novel method to selectively isolate clones with high transgene expression without drug selection. Porcine embryonic fibroblasts were transfected with pCEIEnd, an expression vector that simultaneously expresses enhanced green fluorescent protein (EGFP) and endo-β-galactosidase C(EndoGalC; an enzyme capable of digesting cell surface α-Gal epitope) upon transfection. After transfection, the surviving cells were briefly treated with IB4SAP (α-Gal epitope-specific BS-I-B4 lectin conjugated with a toxin saporin). The treated cells were then allowed to grow in normal medium, during which only cells strongly expressing EndoGalC and EGFP would survive because of the absence of α-Gal epitopes on their cell surface. Almost all the surviving colonies after IB4SAP treatment were in fact negative for BS-I-B4 staining, and also strongly expressed EGFP. This system would be particularly valuable for researchers who wish to perform large-scale production of therapeutically important recombinant proteins.
机译:几乎所有针对哺乳动物细胞的转染方案都使用药物抗性基因来选择转染的细胞。但是,始终需要对每个分离的克隆进行转基因表达的表征,这既费时又费力。在当前的研究中,我们开发了一种新颖的方法来选择性分离具有高转基因表达的克隆而无需选择药物。猪胚胎成纤维细胞用pCEIEnd转染,pCEIEnd是一种表达载体,转染后可同时表达增强的绿色荧光蛋白(EGFP)和内切β-半乳糖苷酶C(EndoGalC;一种能够消化细胞表面α-Gal表位的酶)。转染后,将存活的细胞用IB4SAP(与毒素saporin共轭的α-Gal表位特异性BS-1-B4凝集素)进行短暂处理。然后使处理过的细胞在正常培养基中生长,在此期间,由于细胞表面不存在α-Gal表位,因此只有强烈表达EndoGalC和EGFP的细胞才能存活。实际上,IB4SAP处理后几乎所有存活的菌落对BS1-B4染色均为阴性,并且还强烈表达EGFP。对于希望大规模生产具有治疗意义的重组蛋白的研究人员而言,该系统特别有价值。

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