首页> 外文期刊>Glycoconjugate Journal >High-level expression of biologically active glycoprotein hormones in Pichia pastoris strains—selection of strain GS115, and not X-33, for the production of biologically active N-glycosylated 15N-labeled phCG
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High-level expression of biologically active glycoprotein hormones in Pichia pastoris strains—selection of strain GS115, and not X-33, for the production of biologically active N-glycosylated 15N-labeled phCG

机译:巴斯德毕赤酵母菌株中生物活性糖蛋白激素的高水平表达-选择GS115而不是X-33菌株,用于生产具有生物活性的N-糖基化的 15 N标记的phCG

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The methylotrophic yeast Pichia pastoris is widely used for the production of recombinant glycoproteins. With the aim to generate biologically active 15N-labeled glycohormones for conformational studies focused on the unravelling of the NMR structures in solution, the P. pastoris strains GS115 and X-33 were explored for the expression of human chorionic gonadotropin (phCG) and human follicle-stimulating hormone (phFSH). In agreement with recent investigations on the N-glycosylation of phCG, produced in P. pastoris GS115, using ammonia/glycerol-methanol as nitrogen/carbon sources, the N-glycosylation pattern of phCG, synthesized using NH4Cl/glucose–glycerol–methanol, comprised neutral and charged, phosphorylated high-mannose-type N-glycans (Man8–15GlcNAc2). However, the changed culturing protocol led to much higher amounts of glycoprotein material, which is of importance for an economical realistic approach of the aimed NMR research. In the context of these studies, attention was also paid to the site specific N-glycosylation in phCG produced in P. pastoris GS115. In contrast to the rather simple N-glycosylation pattern of phCG expressed in the GS115 strain, phCG and phFSH expressed in the X-33 strain revealed, besides neutral high-mannose-type N-glycans, also high concentrations of neutral hypermannose-type N-glycans (Manup-to-30GlcNAc2). The latter finding made the X-33 strain not very suitable for generating 15N-labeled material. Therefore, 15N-phCG was expressed in the GS115 strain using the new optimized protocol. The 15N-enrichment was evaluated by 15N-HSQC NMR spectroscopy and GLC-EI/MS. Circular dichroism studies indicated that 15N-phCG/GS115 had the same folding as urinary hCG. Furthermore, 15N-phCG/GS115 was found to be similar to the unlabeled protein in every respect as judged by radioimmunoassay, radioreceptor assays, and in vitro bioassays.
机译:甲基营养酵母巴斯德毕赤酵母被广泛用于重组糖蛋白的生产。为了生成具有生物学活性的 15 N标记的糖激素用于构象研究,其重点是解开溶液中的NMR结构,探索了巴斯德毕赤酵母菌株GS115和X-33用于人类表达。绒毛膜促性腺激素(phCG)和人卵泡刺激素(phFSH)。与最近对巴斯德毕赤酵母GS115中以氨/甘油-甲醇为氮/碳源生产的phCG的N-糖基化的研究相一致,使用NH 4 Cl /葡萄糖-甘油-甲醇,包括中性和带电荷的磷酸化高甘露糖型N-聚糖(Man 8-15 GlcNAc 2 )。但是,改变的培养方案导致糖蛋白物质的数量大大增加,这对于目标NMR研究的一种经济可行的方法很重要。在这些研究的背景下,还关注在巴斯德毕赤酵母GS115中产生的phCG中的位点特异性N-糖基化。与在GS115菌株中表达的phCG相当简单的N-糖基化模式相反,在X-33菌株中表达的phCG和phFSH除了中性高甘露糖型N-聚糖外,还显示出高浓度的中性高甘露糖型N -聚糖(Man 最多30 GlcNAc 2 )。后一个发现使X-33菌株不太适合生成 15 N标记的材料。因此,使用新的优化方案在GS115菌株中表达了 15 N-phCG。通过 15 N-HSQC NMR谱和GLC-EI / MS评估 15 N的富集。圆二色性研究表明, 15 N-phCG / GS115具有与尿hCG相同的折叠性。此外,通过放射免疫测定,放射受体测定和体外生物测定判断, 15 N-phCG / GS115在各个方面均与未标记的蛋白质相似。

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