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Characterization of a GDP-Fucose Transporter and a Fucosyltransferase Involved in the Fucosylation of Glycoproteins in the Diatom Phaeodactylum tricornutum

机译:GDP-岩藻糖转运蛋白和岩藻糖基转移酶的特性涉及硅藻硅藻中糖蛋白的岩藻糖基化。

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摘要

Although Phaeodactylum tricornutum is gaining importance in plant molecular farming for the production of high-value molecules such as monoclonal antibodies, little is currently known about key cell metabolism occurring in this diatom such as protein glycosylation. For example, incorporation of fucose residues in the glycans N-linked to protein in P. tricornutum is questionable. Indeed, such epitope has previously been found on N-glycans of endogenous glycoproteins in P. tricornutum. Meanwhile, the potential immunogenicity of the α(1,3)-fucose epitope present on plant-derived biopharmaceuticals is still a matter of debate. In this paper, we have studied molecular actors potentially involved in the fucosylation of the glycoproteins in P. tricornutum. Based on sequence similarities, we have identified a putative P. tricornutum GDP-L-fucose transporter and three fucosyltransferase (FuT) candidates. The putative P. tricornutum GDP-L-fucose transporter coding sequence was expressed in the Chinese Hamster Ovary (CHO)-gmt5 mutant lacking its endogenous GDP-L-fucose transporter activity. We show that the P. tricornutum transporter is able to rescue the fucosylation of proteins in this CHO-gmt5 mutant cell line, thus demonstrating the functional activity of the diatom transporter and its appropriate Golgi localization. In addition, we overexpressed one of the three FuT candidates, namely the FuT54599, in P. tricornutum and investigated its localization within Golgi stacks of the diatom. Our findings show that overexpression of the FuT54599 leads to a significant increase of the α(1,3)-fucosylation of the diatom endogenous glycoproteins.
机译:尽管三角线藻在植物分子耕作中对于产生高价值分子(例如单克隆抗体)的重要性日益提高,但目前对于在该硅藻中发生的关键细胞代谢(例如蛋白质糖基化)知之甚少。例如,将岩藻糖残基掺入与玉米角蛋白中的蛋白质N连接的聚糖中是有问题的。实际上,先前已经在三角果假单胞菌的内源糖蛋白的N-聚糖上发现了这种表位。同时,存在于植物来源的生物药物上的α(1,3)-岩藻糖表位的潜在免疫原性仍是一个有争议的问题。在本文中,我们研究了可能与三角果假单胞菌糖蛋白的岩藻糖基化有关的分子演员。根据序列的相似性,我们确定了推定的角果疟原虫GDP-L-岩藻糖转运蛋白和三个岩藻糖基转移酶(FuT)候选物。在中国仓鼠卵巢(CHO)-gmt5突变体中表达了推定的三角果GDP-L-岩藻糖转运蛋白编码序列,但该突变体缺乏内源的GDP-L-岩藻糖转运蛋白活性。我们显示,P。tricornutum转运蛋白能够抢救该CHO-gmt5突变细胞系中蛋白质的岩藻糖基化,从而证明了硅藻转运蛋白的功能活性及其适当的高尔基体定位。此外,我们在三角假单胞菌中过表达了三种FuT候选基因之一,即FuT54599,并研究了其在硅藻的高尔基体中的定位。我们的发现表明,FuT54599的过度表达导致硅藻内源糖蛋白的α(1,3)-岩藻糖基化显着增加。

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