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通过表达和补充 30Kc19,增强 CHO 细胞无血清悬浮培养中重组人 EPO 的生产和糖基化。

Enhancement of recombinant human EPO production and glycosylation in serum-free suspension culture of CHO cells through expression and supplementation of 30Kc19.

机构信息

School of Chemical and Biological Engineering, Bio-MAX Institute, Seoul National University, Seoul, 151-744, Republic of Korea.

出版信息

Appl Microbiol Biotechnol. 2012 Nov;96(3):671-83. doi: 10.1007/s00253-012-4203-0. Epub 2012 Jun 20.

Abstract

We previously reported that the expression of Bombyx mori 30Kc19 gene in CHO cells significantly improved both the production and sialylation of recombinant human EPO (rHuEPO) in adhesion culture mode. In this study, the effects of 30Kc19 expression and supplementation of 30Kc19 recombinant protein on the productivity and glycosylation pattern of rHuEPO were investigated in the serum-free suspension culture mode. Especially, glycosylation pattern was examined in detail using a quantitative MALDI-TOF MS method. The expression of 30Kc19 increased the EPO production by 2.5-folds and the host cells produced rHuEPO with more complex glycan structures and a larger content of sialic acid and fucose. The glycan structures of rHuEPO in the 30Kc19-expressing cell consisted of bi-, tri-, tetra-, and penta-antennary branching (35, 18, 33, and 14 %, respectively), while the control cells produced predominantly bi-antennary branching (70 %). About 53 % of the glycans from rHuEPO in the 30Kc19-expressing cell was terminally sialylated, while no obvious sialylated glycan was found in the control cells. The percentage of fucosylated glycans from the 30Kc19-expressing cell culture was 77 %, whereas only 61 % of the glycans from the control cell were fucosylated glycans. We also examined whether these effects were observed when the recombinant 30Kc19 protein produced from Escherichia coli was supplemented into the culture medium for CHO cells. In the control cell line without the 30Kc19 gene, EPO production increased by 41.6 % after the addition of 0.2 mg/mL of the recombinant 30Kc19 protein to the culture medium. By the Western blot analysis after two-dimensional electrophoresis (2-DE) of isoforms of EPO, we confirmed that 30Kc19 enhanced the sialylation of EPO glycans. These results demonstrated that both 30Kc19 gene expression and the recombinant 30Kc19 protein addition enhanced rHuEPO productivity and glycosylation in suspension culture. In conclusion, the utilization of 30Kc19 in CHO cell culture holds great promise for use in the manufacturing of improved biopharmaceutical glycoproteins.

摘要

我们之前报道过,家蚕 30Kc19 基因在 CHO 细胞中的表达显著提高了重组人 EPO(rHuEPO)在黏附培养模式下的产量和唾液酸化。在本研究中,我们研究了 30Kc19 表达和补充 30Kc19 重组蛋白对无血清悬浮培养模式下 rHuEPO 产率和糖基化模式的影响。特别是使用定量 MALDI-TOF MS 方法详细检查了糖基化模式。30Kc19 的表达将 EPO 的产量提高了 2.5 倍,宿主细胞产生的 rHuEPO 具有更复杂的聚糖结构和更大含量的唾液酸和岩藻糖。30Kc19 表达细胞中 rHuEPO 的聚糖结构由二、三、四和五天线分支组成(分别为 35%、18%、33%和 14%),而对照细胞主要产生二天线分支(70%)。30Kc19 表达细胞中 rHuEPO 的糖链中有约 53%是末端唾液酸化的,而对照细胞中没有明显的唾液酸化糖链。30Kc19 表达细胞培养物中岩藻糖基化糖链的百分比为 77%,而对照细胞中糖链的岩藻糖基化百分比仅为 61%。我们还研究了当从大肠杆菌中产生的重组 30Kc19 蛋白被添加到 CHO 细胞的培养基中时是否观察到这些效果。在没有 30Kc19 基因的对照细胞系中,向培养基中添加 0.2mg/ml 的重组 30Kc19 蛋白后,EPO 的产量增加了 41.6%。通过二维电泳(2-DE)后的 EPO 同工型的 Western blot 分析,我们证实 30Kc19 增强了 EPO 聚糖的唾液酸化。这些结果表明,30Kc19 基因表达和重组 30Kc19 蛋白的添加都增强了悬浮培养中的 rHuEPO 产率和糖基化。总之,在 CHO 细胞培养中利用 30Kc19 有望用于制造改良的生物制药糖蛋白。

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