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Engineering ‘designer’ glycomodules for boosting recombinant protein secretion in tobacco hairy root culture and studying hydroxyproline‐O‐glycosylation process in plants

机译:工程'设计师'血型转换,用于在烟草毛细培养中提高重组蛋白质分泌,并在植物中研究羟脯氨酸-O-糖基化过程

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The key technical bottleneck for exploiting plant hairy root cultures as a robust bioproduction platform for therapeutic proteins has been low protein productivity, particularly low secreted protein yields. To address this, we engineered novel hydroxyproline (Hyp)‐O‐glycosylated peptides (HypGPs) into tobacco hairy roots to boost the extracellular secretion of fused proteins and to elucidate Hyp‐O‐glycosylation process of plant cell wall Hyp‐rich glycoproteins. HypGPs representing two major types of cell wall glycoproteins were examined: an extensin module consisting of 18 tandem repeats of ‘Ser‐Hyp‐Hyp‐Hyp‐Hyp’ motif or (SP4)sub18/sub and an arabinogalactan protein module consisting of 32 tandem repeats of ‘Ser‐Hyp’ motif or (SP)sub32/sub. Each module was expressed in tobacco hairy roots as a fusion to the enhanced green fluorescence protein (EGFP). Hairy root cultures engineered with a HypGP module secreted up to 56‐fold greater levels of EGFP, compared with an EGFP control lacking any HypGP module, supporting the function of HypGP modules as a molecular carrier in promoting efficient transport of fused proteins into the culture media. The engineered (SP4)sub18/sub and (SP)sub32/sub modules underwent Hyp‐O‐glycosylation with arabino‐oligosaccharides and arabinogalactan polysaccharides, respectively, which were essential in facilitating secretion of the fused EGFP protein. Distinct non‐Hyp‐O‐glycosylated (SP4)sub18/sub‐EGFP and (SP)sub32/sub‐EGFP intermediates were consistently accumulated within the root tissues, indicating a rate‐limiting trafficking and/or glycosylation of the engineered HypGP modules. An updated model depicting the intracellular trafficking, Hyp‐O‐glycosylation and extracellular secretion of extensin‐styled (SP4)sub18/sub module and AGP‐styled (SP)sub32/sub module is proposed.
机译:用于利用植物毛发根培养物作为治疗蛋白的强大生物生产平台的关键技术瓶颈已经是蛋白质生产率的低,分泌蛋白质产量特别低。为了解决这一点,我们将新的羟脯氨酸(HYP)-O-糖基化肽(Hypgps)设计成烟草毛状根,以提高熔融蛋白的细胞外分泌并阐明植物细胞壁低富含糖蛋白的低糖基化过程。检查代表两种主要类型的细胞壁糖蛋白的晕厥:延长素模块,由18个串联重复的'SER-opp-opp-hyp-hyp-hyp-hyp-hyp-hyp-hyp-hyp-hyp-hyp-hyp-hyp-hyp-hyp-hyp-hyp-hyp-hyp-hyp-hymif或(sp4) 18 和阿拉伯半乳蛋白模块组成由32个串联重复的'SER-HYP'IMIF或(SP) 32 18 和(SP) 32 模块分别接受Hyp-o-糖基化和阿拉伯聚糖多糖,这对于促进分泌至关重要融合EGFP蛋白。明显的非下型 - 糖基化(SP4)<亚> 18/ eGFP和(SP)<亚ki2 -eGFP中间体在根组织内始终累积,表明速率限制贩运和/或工程型HypGP模块的糖基化。提出了一种更新的模型,描绘了延长素风格(SP4) 18 模块和AGP风格(SP) 32 模块的细胞内运输,低糖基化和细胞外分泌和AGP风格(SP) 32个模块的模块。

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