School of Life Sciences, Tsinghua University, Beijing 100084, China.
BMC Biotechnol. 2011 Oct 11;11:91. doi: 10.1186/1472-6750-11-91.
Human granulocyte colony-stimulating factor (hG-CSF) is an important human cytokine which has been widely used in oncology and infection protection. To satisfy clinical needs, expression of recombinant hG-CSF has been studied in several organisms, including rice cell suspension culture and transient expression in tobacco leaves, but there was no published report on its expression in stably transformed plants which can serve as a more economical expression platform with potential industrial application.
In this study, hG-CSF expression was investigated in transgenic tobacco leaves and seeds in which the accumulation of hG-CSF could be enhanced through fusion with ubiquitin by up to 7 fold in leaves and 2 fold in seeds, leading to an accumulation level of 2.5 mg/g total soluble protein (TSP) in leaves and 1.3 mg/g TSP in seeds, relative to hG-CSF expressed without a fusion partner. Immunoblot analysis showed that ubiquitin was processed from the final protein product, and ubiquitination was up-regulated in all transgenic plants analyzed. Driven by CaMV 35S promoter and phaseolin signal peptide, hG-CSF was observed to be secreted into apoplast in leaves but deposited in protein storage vacuole (PSV) in seeds, indicating that targeting of the hG-CSF was tissue-dependent in transgenic tobacco. Bioactivity assay showed that hG-CSF expressed in both seeds and leaves was bioactive to support the proliferation of NFS-60 cells.
In this study, the expression of bioactive hG-CSF in transgenic plants was improved through ubiquitin fusion strategy, demonstrating that protein expression can be enhanced in both plant leaves and seeds through fusion with ubiquitin and providing a typical case of tissue-dependent expression of recombinant protein in transgenic plants.
人粒细胞集落刺激因子(hG-CSF)是一种重要的人类细胞因子,已广泛应用于肿瘤学和感染保护。为了满足临床需求,已在包括水稻细胞悬浮培养和烟草叶片瞬时表达在内的几种生物体中研究了重组 hG-CSF 的表达,但尚未有关于其在稳定转化植物中的表达的报道,稳定转化植物可作为具有潜在工业应用的更经济的表达平台。
本研究探讨了 hG-CSF 在转基因烟草叶片和种子中的表达,通过与泛素融合,可使 hG-CSF 在叶片中积累增加 7 倍,在种子中增加 2 倍,使叶片中总可溶性蛋白(TSP)的积累水平达到 2.5mg/g,种子中达到 1.3mg/g TSP,与未融合伴侣表达的 hG-CSF 相比。免疫印迹分析表明,泛素从最终蛋白产物中被加工,并且所有分析的转基因植物中泛素化均被上调。在 CaMV 35S 启动子和伴大豆球蛋白信号肽的驱动下,hG-CSF 被观察到在叶片中分泌到质外体,但在种子中沉积在蛋白储存液泡(PSV)中,表明 hG-CSF 在转基因烟草中的靶向是组织依赖性的。生物活性测定表明,在种子和叶片中表达的 hG-CSF 具有生物活性,可支持 NFS-60 细胞的增殖。
本研究通过泛素融合策略提高了转基因植物中生物活性 hG-CSF 的表达,表明通过与泛素融合可以增强植物叶片和种子中的蛋白质表达,并为重组蛋白在转基因植物中的组织依赖性表达提供了典型案例。