Southern Crop Protection and Food Research Centre, Agriculture and Agri-Food Canada, London, ON, Canada.
Plant Biotechnol J. 2013 Jun;11(5):535-45. doi: 10.1111/pbi.12041. Epub 2013 Jan 9.
The production of pharmaceutical proteins in plants has made much progress in recent years with the development of transient expression systems, transplastomic technology and humanizing glycosylation patterns in plants. However, the first therapeutic proteins approved for administration to humans and animals were made in plant cell suspensions for reasons of containment, rapid scale-up and lack of toxic contaminants. In this study, we have investigated the production of human interleukin-10 (IL-10) in tobacco BY-2 cell suspension and evaluated the effect of an elastin-like polypeptide tag (ELP) and a green fluorescent protein (GFP) tag on IL-10 accumulation. We report the highest accumulation levels of hIL-10 obtained with any stable plant expression system using the ELP fusion strategy. Although IL-10-ELP has cytokine activity, its activity is reduced compared to unfused IL-10, likely caused by interference of ELP with folding of IL-10. Green fluorescent protein has no effect on IL-10 accumulation, but examining the trafficking of IL-10-GFP over the cell culture cycle revealed fluorescence in the vacuole during the stationary phase of the culture growth cycle. Analysis of isolated vacuoles indicated that GFP alone is found in vacuoles, while the full-size fusion remains in the whole-cell extract. This indicates that GFP is cleaved off prior to its trafficking to the vacuole. On the other hand, IL-10-GFP-ELP remains mostly in the ER and accumulates to high levels. Protein bodies were observed at the end of the culture cycle and are thought to arise as a consequence of high levels of accumulation in the ER.
近年来,随着瞬时表达系统、质体转化技术和植物中糖基化模式的人源化的发展,植物中制药蛋白的生产取得了很大进展。然而,由于控制、快速放大和缺乏有毒污染物等原因,第一批获准用于人类和动物的治疗性蛋白质是在植物细胞悬浮液中生产的。在这项研究中,我们研究了人白细胞介素-10(IL-10)在烟草 BY-2 细胞悬浮液中的生产,并评估了弹性蛋白样多肽标签(ELP)和绿色荧光蛋白(GFP)标签对 IL-10 积累的影响。我们报告了使用 ELP 融合策略获得的任何稳定植物表达系统中获得的最高 hIL-10 积累水平。尽管 IL-10-ELP 具有细胞因子活性,但与未融合的 IL-10 相比,其活性降低,这可能是由于 ELP 干扰了 IL-10 的折叠。GFP 对 IL-10 积累没有影响,但检查 IL-10-GFP 在细胞培养周期中的运输情况表明,在培养生长周期的静止期,荧光出现在液泡中。对分离的液泡进行分析表明,GFP 单独存在于液泡中,而全长融合蛋白仍存在于全细胞提取物中。这表明 GFP 在运输到液泡之前被切割。另一方面,IL-10-GFP-ELP 主要仍在 ER 中积累并达到高水平。在培养周期结束时观察到蛋白体,认为其是 ER 中高水平积累的结果。