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Enhanced expression of the human CD14 protein in tobacco using a 22-kDa alpha-zein signal peptide

机译:使用22 kDaα-玉米醇溶蛋白信号肽增强烟草中人CD14蛋白的表达

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The human CD14, a high affinity receptor for lipopolysaccharides (LPS), is involved in the innate immunity system and the inflammatory response. There is increasing interest in using recombinant approaches to produce purified CD14 protein for therapeutic uses. Plants provide ideal expression systems for the production of recombinant proteins, but the levels of expression of recombinant proteins produced in planta are still not high. To improve expression levels of CD14 the 22-kDa alpha-zein signal peptide (ZSP) from maize was fused to the human CD14 cDNA so that recombinant CD14 could stably accumulate in plant cells. The human CD14 gene and the modified human CD14 cDNA with the 22-kDa ZSP were respectively transformed into tobacco to produce transgenic plants. Western blot analysis confirmed human CD14 accumulation in the transgenic tobacco. The concentration of the recombinant protein in the tobacco leaves was measured by ELISA, and the results suggested that fusion with the 22-kDa alpha-ZSP effectively increased the accumulation of the recombinant protein (rCD14). The concentration of rCD14 in some of the transgenic lines was 19.54 μg g−1 tobacco leaf (fw), which was about 0.6 % of the total soluble protein. The rCD14 protein showed natural LPS-binding bioactivity by using U937 cells mensuration. Our results suggested that the maize 22-kDa alpha-zein signal peptide could be used to increase the accumulation of recombinant protein in tobacco leaves so that proteins can be produced in abundant biomass.
机译:人CD14是脂多糖(LPS)的高亲和力受体,参与先天免疫系统和炎症反应。使用重组方法生产用于治疗用途的纯化CD14蛋白的兴趣日益浓厚。植物为生产重组蛋白提供了理想的表达系统,但是在植物中产生的重组蛋白的表达水平仍然不高。为了提高CD14的表达水平,将来自玉米的22 kDaα-玉米醇溶蛋白信号肽(ZSP)与人CD14 cDNA融合在一起,以便重组CD14可以稳定地在植物细胞中积累。将具有22kDa ZSP的人CD14基因和修饰的人CD14 cDNA分别转化到烟草中以产生转基因植物。 Western印迹分析证实了人CD14在转基因烟草中的积累。通过ELISA测定了烟叶中重组蛋白的浓度,结果表明与22-kDaα-ZSP融合可有效增加重组蛋白(rCD14)的积累。在某些转基因品系中rCD14的浓度为19.54μgg-1烟叶(fw),约占总可溶性蛋白的0.6%。通过使用U937细胞测定,rCD14蛋白表现出天然的LPS结合生物活性。我们的结果表明,玉米22-kDaα-玉米醇溶蛋白信号肽可用于增加烟草叶片中重组蛋白的积累,从而可以产生丰富的生物量蛋白质。

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