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Rapid high-yield expression of full-size IgG antibodies in plants coinfected with noncompeting viral vectors

机译:非竞争性病毒载体共感染植物中全尺寸IgG抗体的快速高产量表达

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Plant viral vectors allow expression of heterologous proteins at high yields, but so far, they have been unable to express hetero-oligomeric proteins efficiently. We describe here a rapid and indefinitely scalable process for high-level expression of functional full-size mAbs of the IgG class in plants. The process relies on synchronous coinfection and coreplication of two viral vectors, each expressing a separate antibody chain. The two vectors are derived from two different plant viruses that were found to be noncompeting. Unlike vectors derived from the same virus, non-competing vectors effectively coexpress the heavy and light chains in the same cell throughout the plant body, resulting in yields of up to 0.5 g of assembled mAbs per kg of fresh-leaf biomass. This technology allows production of gram quantities of mAbs for research purposes in just several days, and the same protocol can be used on an industrial scale in situations requiring rapid response, such as pandemic or terrorism events.
机译:植物病毒载体允许高产量表达异源蛋白质,但是到目前为止,它们还不能有效表达异源寡聚蛋白质。我们在这里描述了植物中IgG类功能性全尺寸单抗的高水平表达的快速且无限可扩展的过程。该过程依赖于两个病毒载体的同步共转染和核心复制,每个病毒载体表达一条单独的抗体链。这两个载体来自发现不竞争的两种不同的植物病毒。与衍生自同一病毒的载体不同,非竞争性载体可在整个植物体内的同一细胞中有效共表达重链和轻链,每千克鲜叶生物量可产生高达0.5 g组装的mAb。这项技术允许在短短几天内生产出用于研究目的的克量的mAb,并且在大流行或恐怖主义事件等需要快速响应的情况下,可以在工业规模上使用相同的协议。

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