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A single-chain antibody fragment is functionally expressed in the cytoplasm of both Escherichia coli and transgenic plants

机译:单链抗体片段在大肠杆菌和转基因植物的细胞质中功能性表达

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摘要

Despite the well-known crucial role of intradomain disulfide bridges for immunoglobulin folding and stability, the single-chain variable fragment of the anti-viral antibody F8 is functionally expressed when targeted to the reducing environment of the plant cytoplasm. We show here that this antibody fragment is also functionally expressed in the cytoplasm of Escherichia coli. A gel shift assay revealed that the single-chain variable fragment (scFv) accumulating in the plant and bacterial cytoplasm bears free sulfhydryl groups. Guanidinium chloride denaturation/renaturation studies indicated that refolding occurs even in a reducing environment, producing a functional molecule with the same spectral properties of the native scFv(F8). Taken together, these results suggest that folding and functionality of this antibody fragment are not prevented in a reducing environment. This antibody fragment could therefore represent a suitable framework for engineering recombinant antibodies to be targeted to the cytoplasm.
机译:尽管域内二硫键对于免疫球蛋白折叠和稳定性起着众所周知的关键作用,但当靶向植物细胞质的还原环境时,抗病毒抗体F8的单链可变片段仍在功能上表达。我们在这里显示该抗体片段也在大肠杆菌的细胞质中功能性表达。凝胶迁移分析显示,在植物和细菌细胞质中积累的单链可变片段(scFv)带有游离巯基。胍基氯化物的变性/复性研究表明,即使在还原环境中也会发生重折叠,从而产生具有与天然scFv(F8)相同的光谱特性的功能分子。综上所述,这些结果表明在还原性环境中不能防止该抗体片段的折叠和功能性。因此,该抗体片段可以代表用于工程化靶向细胞质的重组抗体的合适框架。

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