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Expression Purification and Biophysical Characterization of a Secreted Anthrax Decoy Fusion Protein in Nicotiana benthamiana

机译:烟草炭疽病分泌型炭疽诱饵融合蛋白的表达纯化和生物物理特性

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摘要

Anthrax toxin receptor-mediated drug development for blocking anthrax toxin action has received much attention in recent decades. In this study, we produced a secreted anthrax decoy fusion protein comprised of a portion of the human capillary morphogenesis gene-2 (CMG2) protein fused via a linker to the fragment crystallizable (Fc) domain of human immunoglobulin G1 in Nicotiana benthamiana plants using a transient expression system. Using the Cauliflower Mosaic Virus (CaMV) 35S promoter and co-expression with the p19 gene silencing suppressor, we were able to achieve a high level of recombinant CMG2-Fc-Apo (rCMG2-Fc-Apo) protein accumulation. Production kinetics were observed up to eight days post-infiltration, and maximum production of 826 mg/kg fresh leaf weight was observed on day six. Protein A affinity chromatography purification of the rCMG2-Fc-Apo protein from whole leaf extract and apoplast wash fluid showed the homodimeric form under non-reducing gel electrophoresis and mass spectrometry analysis confirmed the molecular integrity of the secreted protein. The N-glycosylation pattern of purified rCMG2-Fc-Apo protein was analysed; the major portion of N-glycans consists of complex type structures in both protein samples. The most abundant (>50%) N-glycan structure was GlcNAc2(Xyl)Man3(Fuc)GlcNAc2 in rCMG2-Fc-Apo recovered from whole leaf extract and apoplast wash fluid. High mannose N-glycan structures were not detected in the apoplast wash fluid preparation, which confirmed the protein secretion. Altogether, these findings demonstrate that high-level production of rCMG2-Fc-Apo can be achieved by transient production in Nicotiana benthamiana plants with apoplast targeting.
机译:近几十年来,炭疽毒素受体介导的阻断炭疽毒素作用的药物开发受到了广泛关注。在这项研究中,我们生产了一种炭疽分泌诱饵融合蛋白,该蛋白由人毛细血管形态发生基因2(CMG2)蛋白的一部分组成,该蛋白通过接头融合到本生烟草中人免疫球蛋白G1的片段可结晶(Fc)域上,瞬时表达系统。使用花椰菜花叶病毒(CaMV)35S启动子并与p19基因沉默抑制剂共同表达,我们能够实现高水平的重组CMG2-Fc-Apo(rCMG2-Fc-Apo)蛋白积累。在渗透后长达八天观察到生产动力学,在第六天观察到最大产量为826 mg / kg新鲜叶片重量。从全叶提取物和质外体洗涤液中纯化rCMG2-Fc-Apo蛋白的蛋白A亲和色谱表明,在非还原凝胶电泳下,同二聚体形式存在,质谱分析证实了分泌蛋白的分子完整性。分析了纯化的rCMG2-Fc-Apo蛋白的N-糖基化模式; N-聚糖的主要部分由两种蛋白质样品中的复杂类型结构组成。从全叶提取物和质外体洗涤液中回收的rCMG2-Fc-Apo中最丰富的(> 50%)N-聚糖结构是GlcNAc2(Xyl)Man3(Fuc)GlcNAc2。在质外体洗涤液制剂中未检测到高甘露糖N-聚糖结构,这证实了蛋白质的分泌。总而言之,这些发现表明,可以通过在具有质外体定位的本氏烟草植物中瞬时生产来实现rCMG2-Fc-Apo的高水平生产。

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