Establishment of Stable Chinese Hamster Ovary Cells Expressing Codon-Optimized Human Interferon-β Gene

Maryam Rezakhani Taleghani, F. Ghasemi, F. Tabandeh
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Abstract

Background: Codon optimization is an efficient approach to achieve a higher level of heterologous gene expression and generate productive recombinant mammalian cell lines. In our previous work, based on the codon usage preference of Chinese hamster ovary (CHO) cells, a codon-optimized human interferon-beta (opt-hIFN-β) gene was redesigned and transiently expressed in a suspension-adapted CHO (CHO-s) cell line. Our results indicated a 2.8-fold increase in the expression level of the codon-optimized gene compared to the unmodified sequence. Objectives: In the current work, based on our previous results, a stable CHO-K1 cell line expressing the opt-hIFN-β gene was engineered, in which the opt-hIFN-β gene expression was confirmed by dot and western blotting analyses. Methods: The designed opt-hIFN-β sequence was digested and cloned into a pcDNA3.0 shuttle vector downstream to the cytomegalovirus (CMV) promoter. The verified recombinant plasmid was then linearized and transfected into a CHO-K1 cell line to integrate the opt-hIFN-β gene into the CHO-K1 genome. The transfected cells were then grown under the selective pressure of 450 µg/mL of G418 to develop a stable CHO-K1 cell line expressing the opt-hIFN-β gene. The enzyme-linked immunosorbent assay (ELISA) and dot and western blotting analyses were carried out to verify hIFN-β protein expression. Results: ELISA and dot and western blotting analyses confirmed the expression of hIFN-β in the stably-transfected CHO-K1 cells. Conclusions: Stable expression of the opt-hIFN-β gene in the CHO-K1 cell line was verified by ELISA and dot and western blotting analyses. This study was a pioneering work for further production of recombinant hIFN-β in the bioreactor.
表达密码子优化的人干扰素-β基因稳定的中国仓鼠卵巢细胞的建立
背景:密码子优化是实现高水平外源基因表达和产生高产重组哺乳动物细胞系的有效途径。在我们之前的工作中,基于中国仓鼠卵巢(CHO)细胞的密码子使用偏好,重新设计了一个密码子优化的人干扰素β (opt-hIFN-β)基因,并在悬液适应的CHO (CHO-s)细胞系中短暂表达。我们的研究结果表明,与未修饰的序列相比,密码子优化基因的表达水平增加了2.8倍。目的:本研究在前期研究的基础上,构建了表达opt-hIFN-β基因的CHO-K1细胞株,并通过斑点和western blotting分析证实了opt-hIFN-β基因的表达。方法:将设计的opt-hIFN-β序列经酶切后克隆到巨细胞病毒(CMV)启动子下游的pcDNA3.0穿梭载体中。将验证的重组质粒线性化并转染CHO-K1细胞系,将opt-hIFN-β基因整合到CHO-K1基因组中。转染后的细胞在450µg/mL G418的选择压力下生长,形成稳定表达opt-hIFN-β基因的CHO-K1细胞系。采用酶联免疫吸附试验(ELISA)、斑点和western blotting分析验证hIFN-β蛋白的表达。结果:ELISA、dot和western blotting分析证实,稳定转染的CHO-K1细胞中有hIFN-β的表达。结论:ELISA、dot和western blotting分析证实opt-hIFN-β基因在CHO-K1细胞株中稳定表达。本研究为在生物反应器中进一步生产重组hIFN-β奠定了基础。
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