Bardor Muriel, Cabrera Gleysin, Rudd Pauline M, Dwek Raymond A, Cremata José A, Lerouge Patrice
CNRS-UMR 6037, GDR G3, IFRMP 23, Université de Rouen, 76821 Mont Saint Aignan Cédex, France.
Curr Opin Struct Biol. 2006 Oct;16(5):576-83. doi: 10.1016/j.sbi.2006.08.009. Epub 2006 Sep 11.
Plants are attractive hosts for the production of recombinant proteins. However, their inability to process authentic human N-glycan structures imposes a major limitation on their use as expression systems for therapeutic products. Several strategies have emerged to engineer plant N-glycans into human-compatible molecules. In this context, fast and reliable analytical strategies for the identification of plant N-glycan profiles have been developed to define the N-glycosylation pathways of crops, to monitor the production of plant-made pharmaceuticals and to assess in planta remodelling strategies.
植物是生产重组蛋白的理想宿主。然而,它们无法加工真正的人类N-聚糖结构,这对其作为治疗产品表达系统的应用构成了重大限制。已经出现了几种策略,可将植物N-聚糖工程改造为与人类兼容的分子。在这种情况下,已经开发出快速可靠的分析策略来鉴定植物N-聚糖谱,以确定作物的N-糖基化途径,监测植物源药物的生产,并评估植物体内的重塑策略。