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High-level expression of proteins in mammalian cells using transcription regulatory sequences from the Chinese hamster EF-1 alpha gene

机译:利用中国仓鼠EF-1 alpha基因的转录调控序列在哺乳动物细胞中高水平表达蛋白质

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摘要

High-level expression of a recombinant protein in Chinese hamster ovary (CHO) cells typically requires the laborious and time-consuming procedure of stepwise gene amplification. We hypothesized that use of transcription control regions from a highly expressed gene in CHO cells to drive expression of a gene of interest might reduce the requirement for gene amplification. To this end, we cloned a 19 kb DNA fragment containing the Chinese hamster elongation factor-1alpha (EF-1alpha) gene, as well as 12 kb of 5' flanking sequence and 4 kb of 3' flanking sequence. Expression vectors containing 5' and 3' flanking sequences from the Chinese hamster EF-1alpha (CHEF1) gene were constructed and, after insertion of six different reporter genes, transfected into CHO cells. For comparison, CHO cells were also transfected with the same six reporter genes inserted into commercial vectors utilizing either the immediate early promoter from cytomegalovirus (CMV) or the human EF-1alpha promoter. The striking result from these studies was that average expression levels from pooled, stable transfectants of CHEF1 vectors were 6.. to 35-fold higher than expression levels from commercial vectors that utilize the CMV or the human EF-1alpha promoters. We also used a CHEF1 vector to express a secreted and a membrane-bound protein in stably transfected non-CHO cell lines. CHEF1-driven expression of secreted alkaline phosphatase (SEAP) in three of four cell lines tested (HEK 2 93, K562, L1.2, and HCT 116) was 13- to 280-fold greater than that from a commercial vector employing the CMV promoter. After transfection of four different cell lines of hematopoietic origin (K562, L1.2, JY, and Jurkat), the CHEF1 vector was found to express the chemokine receptor CCR4 at > 10-fold higher levels than that driven from a commercial vector utilizing the CMV promoter. Results from these experiments suggest that the CHEF1 vectors will be useful for high-level protein expression not only in CHO cells, but also in a variety of other mammalian cell lines.
机译:重组蛋白在中国仓鼠卵巢(CHO)细胞中的高水平表达通常需要逐步进行基因扩增的费力且耗时的过程。我们假设使用来自CHO细胞中高表达基因的转录控制区来驱动目的基因的表达可能会减少基因扩增的需求。为此,我们克隆了一个19 kb的DNA片段,其中包含中国仓鼠延伸因子-1alpha(EF-1alpha)基因以及12 kb的5'侧翼序列和4 kb的3'侧翼序列。构建了包含来自中国仓鼠EF-1alpha(CHEF1)基因的5'和3'侧翼序列的表达载体,并在插入六个不同的报告基因后,将其转染到CHO细胞中。为了进行比较,还使用来自巨细胞病毒(CMV)的立即早期启动子或人EF-1alpha启动子,用插入商业载体的相同六个报告基因转染CHO细胞。这些研究的惊人结果是,CHEF1载体的合并,稳定转染子的平均表达水平比使用CMV或人EF-1alpha启动子的商业载体的表达水平高6.至35倍。我们还使用了CHEF1载体在稳定转染的非CHO细胞系中表达一种分泌的和膜结合的蛋白。在测试的四个细胞系中的三个(HEK 2 93,K562,L1.2和HCT 116)中,CHEF1驱动的分泌性碱性磷酸酶(SEAP)表达比使用CMV的商业载体高13-280倍启动子。转染四种不同的造血细胞系(K562,L1.2,JY和Jurkat)后,发现CHEF1载体的趋化因子受体CCR4的表达水平比使用商业载体驱动的趋化因子受体CCR4高10倍以上。 CMV启动子。这些实验的结果表明,CHEF1载体不仅可用于CHO细胞中,而且可用于多种其他哺乳动物细胞系中的高水平蛋白表达。

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