Department of Applied Genetics and Cell Biology, University of Natural Resources and Life Sciences, Vienna, Austria.
Biotechnol J. 2012 Sep;7(9):1088-98. doi: 10.1002/biot.201200032. Epub 2012 Aug 14.
It is now possible to produce complex human proteins, largely correctly folded and N-glycosylated, in plants. Much effort has been invested in engineering expression technologies to develop products with superior characteristics. The results have begun to show success in controlling important posttranslational modifications such as N-glycosylation. With the emerging data increasingly indicating the significance of proper N-glycosylation for the efficacy of a drug, glyco-engineering has become an important issue not only for academia but also for the biopharmaceutical industry. Plants have demonstrated a high degree of tolerance to changes in the N-glycosylation pathway, allowing recombinant proteins to be modified into human-like structures in a specific and controlled manner. Frequently the results are a largely homogeneously glycosylated product, currently unrivalled by that of any other expression platforms. This review provides a comprehensive analysis of recent advances in plant N-glyco-engineering in the context of the expression of therapeutically relevant proteins, highlighting both the challenges and successes in the application of such powerful technologies.
现在可以在植物中大量正确折叠和 N-糖基化的复杂人类蛋白质。人们投入了大量精力来设计表达技术,以开发具有优越特性的产品。这些努力已经开始在控制重要的翻译后修饰方面取得成功,例如 N-糖基化。随着越来越多的数据表明适当的 N-糖基化对于药物疗效的重要性,糖基工程不仅成为学术界,而且也成为生物制药行业的一个重要问题。植物已表现出对 N-糖基化途径变化的高度耐受性,允许重组蛋白以特定且受控的方式修饰成人样结构。通常,结果是一种高度同质的糖基化产物,目前在任何其他表达平台都无法与之媲美。本文综述了在治疗相关蛋白表达方面植物 N-糖基工程的最新进展,重点分析了这些强大技术应用中的挑战和成功。