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植物源免疫球蛋白的糖基化。

Glycosylation of Plant-Produced Immunoglobulins.

机构信息

St. George's University of London, London, UK.

University of Natural Resources and Life Sciences Vienna, Vienna, Austria.

出版信息

Exp Suppl. 2021;112:519-543. doi: 10.1007/978-3-030-76912-3_16.

Abstract

Many economically important protein-based therapeutics like monoclonal antibodies are glycosylated. Due to the recognized importance of this type of posttranslational modification, glycoengineering of expression systems to obtain highly active and homogenous therapeutics is an emerging field. Although most of the monoclonal antibodies on the market are still produced in mammalian expression platforms, plants are emerging as an alternative cost-effective and scalable production platform that allows precise engineering of glycosylation to produce targeted human glycoforms at large homogeneity. Apart from producing more effective antibodies, pure glycoforms are required in efforts to link biological functions to specific glycan structures. Much is already known about the role of IgG1 glycosylation and this antibody class is the dominant recombinant format that has been expressed in plants. By contrast, little attention has been paid to the glycoengineering of recombinant IgG subtypes and the other four classes of human immunoglobulins (IgA, IgD, IgE, and IgM). Except for IgD, all these antibody classes have been expressed in plants and the glycosylation has been analyzed in a site-specific manner. Here, we summarize the current data on glycosylation of plant-produced monoclonal antibodies and discuss the findings in the light of known functions for these glycans.

摘要

许多具有经济重要性的蛋白质治疗药物,如单克隆抗体,都是糖基化的。由于这种翻译后修饰类型的重要性已被认识到,因此,糖基工程表达系统以获得高活性和均一的治疗药物是一个新兴领域。尽管市场上的大多数单克隆抗体仍在哺乳动物表达平台上生产,但植物作为一种具有成本效益和可扩展的替代生产平台正在出现,它允许对糖基化进行精确工程改造,以大规模生产靶向的人类糖型。除了生产更有效的抗体外,还需要纯糖型,以便将生物功能与特定聚糖结构联系起来。人们已经对 IgG1 糖基化的作用有了很多了解,并且这种抗体类别是在植物中表达的主要重组形式。相比之下,人们对重组 IgG 亚型和其他四类人类免疫球蛋白(IgA、IgD、IgE 和 IgM)的糖基工程关注甚少。除了 IgD 之外,所有这些抗体类别都在植物中表达,并且已经以位点特异性方式分析了它们的糖基化。在这里,我们总结了植物生产的单克隆抗体的糖基化的最新数据,并根据这些聚糖的已知功能讨论了这些发现。

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