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在微载体上、聚集体中以及悬浮培养的中国仓鼠卵巢(CHO)细胞生产一种膜结合蛋白——人γ-谷氨酰转移酶。

Production of a membrane-bound protein, the human gamma-glutamyl transferase, by CHO cells cultivated on microcarriers, in aggregates and in suspension.

作者信息

Chevalot I, Visvikis A, Nabet P, Engasser J M, Marc A

机构信息

Laboratoire des Sciences du Génie Chimique, UPR CNRS 6811, Nancy.

出版信息

Cytotechnology. 1994;16(2):121-9. doi: 10.1007/BF00754614.

Abstract

Recombinant Chinese Hamster Ovary (CHO) cells, engineered for the production of human gamma-glutamyl transferase (GGT), have been grown on Cytodex 1 microcarriers, as aggregates, or as single cells in suspension after adaptation. GGT is a membrane bound enzyme which was not secreted during the culture period. The maximal enzyme activity was found to be directly related to the achieved maximal cell density. Culture of CHO on microcarriers yielded the fastest growth, with a specific growth rate of 0.04 h-1, the highest cell density (near 1.3 x 10(6) cells ml-1), and the highest enzyme activity around 300 mU ml-1, which corresponded to a specific cellular level of 20 mU 10(-5) cells. GGT could also be produced by growing CHO cells in suspension as single cells or as aggregates. Under these conditions, however, the specific CHO growth rate was significantly slower and the GGT level per cell was divided by a factor 6. Growing CHO cells without microcarriers also resulted in differences in cell metabolism, with a higher conversion yield of glutamine into ammonia, and a higher cell lysis. The catalytic kinetic constants of the enzyme were found identical for the three culture systems.

摘要

经基因工程改造用于生产人γ-谷氨酰转移酶(GGT)的重组中国仓鼠卵巢(CHO)细胞,在适应后已在Cytodex 1微载体上生长,呈聚集体形式,或悬浮培养为单细胞。GGT是一种膜结合酶,在培养期间不分泌。发现最大酶活性与达到的最大细胞密度直接相关。在微载体上培养CHO细胞生长最快,比生长速率为0.04 h-1,细胞密度最高(接近1.3×10(6) 个细胞/ml),酶活性最高约为300 mU/ml,相当于每10(-5) 个细胞的比细胞水平为20 mU。GGT也可以通过将CHO细胞作为单细胞或聚集体悬浮培养来生产。然而,在这些条件下,CHO的比生长速率明显较慢,每个细胞的GGT水平降低了6倍。无微载体培养CHO细胞也导致细胞代谢存在差异,谷氨酰胺向氨的转化率更高,细胞裂解率更高。发现该酶在三种培养系统中的催化动力学常数相同。

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