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Function and glycosylation of plant-derived antiviral monoclonal antibody

机译:植物源抗病毒单克隆抗体的功能和糖基化

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Plant genetic engineering led to the production of plant-derived mAb (mAb(P)), which provides a safe and economically feasible alternative to the current methods of antibody production in animal systems. In this study, the heavy and light chains of human anti-rabies mAb were expressed and assembled in planta under the control of two strong constitutive promoters. An alfalfa mosaic virus untranslated leader sequence and Lys-Asp-Glu-Leu (KDEL) endoplasmic reticulum retention signal were linked at the N and C terminus of the heavy chain, respectively. mAbP was as effective at neutralizing the activity of the rabies virus as the mammalian-derived antibody (mAb(M)) or human rabies Ig (HRIG). The mAb(P) contained mainly oligomannose type N-glycans (90%) and had no potentially antigenic alpha(1,3)-linked fucose residues. mAb(P) had a shorter half-life than mAb(M). The mAb(P) was as efficient as HRIG for post-exposure prophylaxis against rabies virus in hamsters, indicating that differences in N-glycosylation do not affect the efficacy of the antibody in this model. [References: 46]
机译:植物基因工程导致了植物来源单克隆抗体(mAb(P))的生产,这为动物系统中当前抗体生产方法提供了一种安全且经济上可行的替代方法。在这项研究中,人类抗狂犬病单克隆抗体的重链和轻链在两个强大的组成型启动子的控制下在植物中表达和组装。苜蓿花叶病毒未翻译的前导序列和Lys-Asp-Glu-Leu(KDEL)内质网保留信号分别连接在重链的N和C末端。与哺乳动物来源的抗体(mAb(M))或人狂犬病Ig(HRIG)一样,mAbP在中和狂犬病病毒的活性方面同样有效。 mAb(P)主要包含低聚甘露糖型N-聚糖(90%),并且没有潜在的抗原性与α(1,3)连接的岩藻糖残基。 mAb(P)的半衰期比mAb(M)短。 mAb(P)与HRIG一样有效,可预防仓鼠中的狂犬病病毒暴露后,表明N-糖基化差异不会影响该模型中抗体的功效。 [参考:46]

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