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首页> 外文期刊>Plant Biotechnology Journal >Oligomerization status influences subcellular deposition and glycosylation of recombinant butyrylcholinesterase in Nicotiana benthamiana
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Oligomerization status influences subcellular deposition and glycosylation of recombinant butyrylcholinesterase in Nicotiana benthamiana

机译:寡聚化状态影响本氏烟草中重组丁酰胆碱酯酶的亚细胞沉积和糖基化

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Plants have a proven track record for the expression of biopharmaceutically interesting proteins. Importantly, plants and mammals share a highly conserved secretory pathway that allows similar folding, assembly and posttranslational modifications of proteins. Human butyrylcholinesterase (BChE) is a highly sialylated, tetrameric serum protein, investigated as a bioscavenger for organophosphorous nerve agents. Expression of recombinant BChE (rBChE) in Nicotiana benthamiana results in accumulation of both monomers as well as assembled oligomers. In particular, we show here that co?¢????expression of BChE with a novel gene?¢????stacking vector, carrying six mammalian genes necessary for in planta protein sialylation, resulted in the generation of rBChE decorated with sialylated N ?¢????glycans. The N ?¢????glycosylation profile of monomeric rBChE secreted to the apoplast largely resembles the plasma?¢????derived orthologue. In contrast, rBChE purified from total soluble protein extracts was decorated with a significant portion of ER?¢????typical oligomannosidic structures. Biochemical analyses and live?¢????cell imaging experiments indicated that impaired N ?¢????glycan processing is due to aberrant deposition of rBChE oligomers in the endoplasmic reticulum or endoplasmic?¢????reticulum?¢????derived compartments. In summary, we show the assembly of rBChE multimers, however, also points to the need for in?¢????depth studies to explain the unexpected subcellular targeting of oligomeric BChE in plants.
机译:植物具有表达生物药学上感兴趣的蛋白质的可靠记录。重要的是,植物和哺乳动物共有高度保守的分泌途径,该途径允许对蛋白质进行类似的折叠,组装和翻译后修饰。人丁酰胆碱酯酶(BChE)是一种高度唾液酸化的四聚体血清蛋白,已被研究用作有机磷神经剂的生物清除剂。重组BChE(rBChE)在本氏烟草中的表达导致单体以及组装的寡聚物的积累。特别是,我们在这里显示了BChE与新型基因的堆叠表达,该载体带有六个植物蛋白唾液酸化所必需的哺乳动物基因,导致产生了用唾液酸化修饰的rBChE。 N?聚糖。质外体分泌的单体rBChE的Nα-β糖基化特征与血浆β-直向同源物非常相似。相反,从总的可溶性蛋白提取物中纯化的rBChE用很大一部分的ERβ-β-典型的寡甘露糖苷结构修饰。生化分析和活细胞成像实验表明,Nβ聚糖加工受损是由于rBChE低聚物在内质网或内质网中异常沉积所致。派生隔间。总之,我们显示了rBChE多聚体的装配,但是,这也表明需要进行深入的研究来解释植物中寡聚BChE的意想不到的亚细胞靶向。

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