Normandie University, UNIROUEN, Laboratoire Glycobiologie et Matrice Extracellulaire végétale (Glyco-MEV) EA4358, 76000 Rouen, France; Normandie University, UNIROUEN, SFR NORVEGE, 76000 Rouen, France.
Normandie University, UNIROUEN, INSA Rouen, CNRS, UMR6014 - COBRA, 76000 Rouen, France.
Carbohydr Polym. 2021 May 1;259:117660. doi: 10.1016/j.carbpol.2021.117660. Epub 2021 Jan 22.
Microalgae are emerging production systems for recombinant proteins like monoclonal antibodies. In this context, the characterization of the host cell N-glycosylation machinery and of the microalgae-made biopharmaceuticals, which are mainly glycoprotein-based products, requires efficient analytical methodologies dedicated to the profiling of the N-glycans. Herein, in order to gain knowledge regarding its N-glycosylation pathway, we profile the protein N-linked oligosaccharides isolated from the diatom Phaeodactylum tricornutum that has been used successfully to produce functional monoclonal antibodies. The combination of ion mobility spectrometry-mass Spectrometry and electrospray ionization-multistage tandem mass spectrometry allows us to decipher the detailed structure of the oligomannoside isomers and to demonstrate that the processing of the oligomannosides N-linked to proteins occurs in this diatom as reported in mammals. Therefore, P. tricornutum synthesizes human-like oligomannosides in contrast to other microalgae species. This represent an advantage as an alternative ecofriendly expression system to produce biopharmaceuticals used for human therapy.
微藻是新兴的重组蛋白(如单克隆抗体)生产系统。在此背景下,需要对宿主细胞 N-糖基化机制和微藻生物制药(主要是糖蛋白产品)进行特征分析,这就需要专门的分析方法来对 N-聚糖进行分析。在此,为了了解其 N-糖基化途径,我们对已成功用于生产功能性单克隆抗体的硅藻三角褐指藻中分离出的蛋白质 N-连接寡糖进行了分析。离子淌度质谱-质谱和电喷雾电离-多级串联质谱的组合,使我们能够解析寡甘露糖异构体的详细结构,并证明与哺乳动物中报道的情况一样,蛋白质上 N-连接的寡甘露糖的加工发生在这种硅藻中。因此,三角褐指藻合成与人相似的寡甘露糖,与其他微藻物种不同。与其他微藻物种相比,这是一种替代的环保型表达系统,可用于生产用于人类治疗的生物制药。