首页> 外文期刊>Bio/Technology >REMOVAL OF SIALIC ACID FROM A GLYCOPROTEIN IN CHO CELL CULTURE SUPERNATANT BY ACTION OF AN EXTRACELLULAR CHO CELL SIALIDASE
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REMOVAL OF SIALIC ACID FROM A GLYCOPROTEIN IN CHO CELL CULTURE SUPERNATANT BY ACTION OF AN EXTRACELLULAR CHO CELL SIALIDASE

机译:通过细胞外CHO细胞唾液酸酶的作用从糖蛋白去除CHO细胞培养上清液中的唾液酸

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摘要

We have directly tested the hypothesis that Chinese hamster ovary (CHO) cell-produced glycoproteins are subject to extracellular degradation by a sialidase endogenous to the CHO cell line. Factors important to understanding the potential for extracellular degradation are addressed including the glycoprotein specificity, subcellular source, mechanism of release, and stability of the sialidase activity. The extracellular CHO cell sialidase apparently originates from the cytosol of the cells, and is released to the cell culture supernatant as a result of damage to the cellular membrane. The extracellular sialidase is active toward a variety of CHO cell-produced glycoproteins, and can hydrolyze sialic acid from the recombinant glycoprotein gp120 in the culture supernatant. While measuring the actual degradation of a glycoprotein by extracellular CHO cell sialidase can be difficult, data presented here suggest that the level of degradation can be estimated indirectly by using a more convenient fluorescent substrate, 4-methylumbelliferyl-alpha-D-N-acetylneuraminic acid, to quantify sialidase activity. Degradation by sialidase is minimized through addition of the sialidase inhibitor 2,3-dehydro-2-deoxy-N-acetylneuraminic acid to the culture supernatant. The results in this study suggest additional potential approaches for minimizing degradation by sialidase, including isolation of a sialidase-deficient CHO cell line.
机译:我们已经直接检验了这样的假设,即中国仓鼠卵巢(CHO)细胞产生的糖蛋白受到CHO细胞系内源性唾液酸酶的降解。解决了对于理解细胞外降解潜力的重要因素,包括糖蛋白特异性,亚细胞来源,释放机理和唾液酸酶活性的稳定性。细胞外CHO细胞唾液酸酶显然起源于细胞的细胞溶质,并由于细胞膜受损而释放到细胞培养上清液中。细胞外唾液酸酶对多种CHO细胞产生的糖蛋白具有活性,并且可以从培养物上清液中的重组糖蛋白gp120水解唾液酸。虽然很难通过细胞外CHO细胞唾液酸酶测量糖蛋白的实际降解,但此处提供的数据表明,可以通过使用更方便的荧光底物4-甲基伞形酮-α-DN-乙酰神经氨酸间接估算降解水平,量化唾液酸酶活性。通过向培养上清液中加入唾液酸酶抑制剂2,3-脱氢-2-脱氧-N-乙酰神经氨酸,将唾液酸酶的降解减至最小。这项研究的结果提出了其他可能的方法来减少唾液酸酶的降解,包括分离唾液酸酶缺陷的CHO细胞系。

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