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Plant?¢????specific glycosylation patterns in the context of therapeutic protein production

机译:在产生治疗性蛋白质的过程中植物的特定糖基化模式

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While N ?¢????glycan synthesis in the endoplasmic reticulum (ER) is relatively well conserved in eukaryotes, N ?¢????glycan processing and O ?¢????glycan biosynthesis in the Golgi apparatus are kingdom specific and result in different oligosaccharide structures attached to glycoproteins in plants and mammals. With the prospect of using plants as alternative hosts to mammalian cell lines for the production of therapeutic glycoproteins, significant progress has been made towards the humanization of protein N ?¢????glycosylation in plant cells. To date, successful efforts in this direction have mainly focused on the targeted expression of therapeutic proteins, the knockout of plant?¢????specific N?¢???? glycan?¢????processing genes, and/or the introduction of the enzymatic machinery catalyzing the synthesis, transport and addition of human sugars. By contrast, very little attention has been paid until now to the O ?¢????glycosylation status of plant?¢????made therapeutic proteins, which is surprising considering that hundreds of human proteins represent good candidates for Hyp?¢???? O glycosylation when produced in a plant expression system. This review describes protein N ?¢???? and O ?¢????linked glycosylation in plants and highlights the limitations and advantages of plant?¢????specific glycosylation on plant?¢????made biopharmaceuticals.
机译:虽然内质网中Nα-β聚糖的合成在真核生物中相对较为保守,但高尔基体中Nα-β聚糖的加工和Oα-β聚糖的生物合成是特定于王国的并导致植物和哺乳动物的糖蛋白上附着不同的寡糖结构。可以将植物用作哺乳动物细胞系的替代宿主以生产治疗性糖蛋白的前景,在植物细胞中蛋白质Nα-β-糖基化的人源化方面已取得重大进展。迄今为止,在此方向上的成功努力主要集中在治疗性蛋白质的靶向表达上,即敲除植物中的特异性N 2 -N 3。聚糖加工基因,和/或酶机制的引入催化人糖的合成,运输和添加。相比之下,到目前为止,对植物制成的治疗性蛋白质的Oα-β-糖基化状态的关注很少,考虑到数百种人蛋白质代表了Hyp-β的良好候选者,这是令人惊讶的。 ????在植物表达系统中产生的O糖基化。这篇评论描述了蛋白质N O 2和O 3与植物中的糖基化连接,并突出了植物对植物制得的生物药物的特异性糖基化的局限性和优点。

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