Cho Hee Jun, Oh Byung Moo, Kim Jong-Tae, Lim Jeewon, Park Sang Yoon, Hwang Yo Sep, Baek Kyoung Eun, Kim Bo-Yeon, Choi Inpyo, Lee Hee Gu
Immunotherapy Convergence Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Daejeon 34141, Republic of Korea.
Department of Biomolecular Science, University of Science and Technology (UST), Daejeon 34113, Republic of Korea.
J Microbiol Biotechnol. 2019 Feb 28;29(2):304-310. doi: 10.4014/jmb.1811.11042.
Interleukin-21 is a common γ-chain cytokine that controls the immune responses of B cells, T cells, and natural killer cells. Targeting IL-21 to strengthen the immune system is promising for the development of vaccines as well as anti-infection and anti-tumor therapies. However, the practical application of IL-21 is limited by the high production cost. In this study, we improved IL-21 production by codon optimization and selection of appropriate signal peptide in CHO-K1 cells. Codon-optimized or non-optimized human IL-21 was stably transfected into CHO-K1 cells. IL-21 expression was 10-fold higher for codon-optimized than non-optimized IL-21. We fused five different signal peptides to codon-optimized mature IL-21 and evaluated their effect on IL-21 production. The best result (a 3-fold increase) was obtained using a signal peptide derived from human azurocidin. Furthermore, codon-optimized IL-21 containing the azurocidin signal peptide promoted IFN-γ secretion and STAT3 phosphorylation in NK-92 cells similar to codon-optimized IL-21 containing original signal peptide. Collectively, these results indicate that codon optimization and azurocidin signal peptides provide an efficient approach for the high-level production of IL-21 as a biopharmaceutical.
白细胞介素-21是一种常见的γ链细胞因子,可控制B细胞、T细胞和自然杀伤细胞的免疫反应。将白细胞介素-21作为靶点以增强免疫系统,在疫苗研发以及抗感染和抗肿瘤治疗方面具有广阔前景。然而,白细胞介素-21的实际应用受到高生产成本的限制。在本研究中,我们通过密码子优化和在CHO-K1细胞中选择合适的信号肽来提高白细胞介素-21的产量。将密码子优化或未优化的人白细胞介素-21稳定转染到CHO-K1细胞中。密码子优化的白细胞介素-21的表达比未优化的白细胞介素-21高10倍。我们将五种不同的信号肽与密码子优化的成熟白细胞介素-21融合,并评估它们对白细胞介素-21产量的影响。使用源自人天青杀素的信号肽获得了最佳结果(增加了3倍)。此外,含有天青杀素信号肽的密码子优化的白细胞介素-21在NK-92细胞中促进干扰素-γ分泌和信号转导及转录激活因子3磷酸化,这与含有原始信号肽的密码子优化的白细胞介素-21相似。总体而言,这些结果表明,密码子优化和天青杀素信号肽为作为生物药物的白细胞介素-21的高水平生产提供了一种有效方法。