PlantVax Corporation, Rockville, MD, USA.
Pro-SPR GmbH, Alsdorf, Germany.
Sci Rep. 2022 Jun 15;12(1):10027. doi: 10.1038/s41598-022-14075-3.
High yield production of recombinant HIV SOSIP envelope (Env) trimers has proven elusive as numerous disulfide bonds, proteolytic cleavage and extensive glycosylation pose high demands on the host cell machinery and stress imposed by accumulation of misfolded proteins may ultimately lead to cellular toxicity. The present study utilized the Nicotiana benthamiana/p19 (N.b./p19) transient plant system to assess co-expression of two ER master regulators and 5 chaperones, crucial in the folding process, to enhance yields of three Env SOSIPs, single chain BG505 SOSIP.664 gp140, CH505TF.6R.SOSIP.664.v4.1 and CH848-10.17-DT9. Phenotypic changes in leaves induced by SOSIP expression were employed to rapidly identify chaperone-assisted improvement in health and expression. Up to 15-fold increases were obtained by co-infiltration of peptidylprolvl isomerase (PPI) and calreticulin (CRT) which were further enhanced by addition of the ER-retrieval KDEL tags to the SOSIP genes; levels depending on individual SOSIP type, day of harvest and chaperone gene dosage. Results are consistent with reducing SOSIP misfolding and cellular stress due to increased exposure to the plant host cell's calnexin/calreticulin network and accelerating the rate-limiting cis-trans isomerization of Xaa-Pro peptide bonds respectively. Plant transient co-expression facilitates rapid identification of host cell factors and will be translatable to other complex glycoproteins and mammalian expression systems.
高效生产重组 HIV SOSIP 包膜 (Env) 三聚体一直难以实现,因为大量的二硫键、蛋白水解切割和广泛的糖基化对宿主细胞机制提出了很高的要求,而错误折叠蛋白的积累所带来的压力最终可能导致细胞毒性。本研究利用 Nicotiana benthamiana/p19(N.b./p19)瞬时植物系统来评估两种内质网主要调节剂和 5 种伴侣蛋白的共表达,这些伴侣蛋白在折叠过程中至关重要,以提高三种 Env SOSIP 、单链 BG505 SOSIP.664 gp140、CH505TF.6R.SOSIP.664.v4.1 和 CH848-10.17-DT9 的产量。通过 SOSIP 表达诱导的叶片表型变化,快速鉴定出伴侣蛋白辅助改善健康和表达的情况。通过共浸润肽基脯氨酰异构酶 (PPI) 和钙网蛋白 (CRT) 可获得高达 15 倍的提高,通过在 SOSIP 基因上添加内质网回收 KDEL 标签进一步增强;水平取决于个别 SOSIP 类型、收获日和伴侣基因剂量。结果与由于增加了与植物宿主细胞的 calnexin/calreticulin 网络的接触,从而减少 SOSIP 错误折叠和细胞应激,以及分别加速 Xaa-Pro 肽键的限速顺反异构化反应相一致。植物瞬时共表达有助于快速鉴定宿主细胞因子,并且可以转化为其他复杂糖蛋白和哺乳动物表达系统。