Engineering Chinese hamster ovary (CHO) cells to achieve an inverse growth associated production of a foreign protein, β-galactosidase

被引:20
|
作者
Lee, FWF [1 ]
Elias, CB [1 ]
Todd, P [1 ]
Kompala, DS [1 ]
机构
[1] Univ Colorado, Dept Chem Engn, Boulder, CO 80309 USA
关键词
adenovirus major late promoter; beta-galactosidase; Chinese hamster ovary cells; continuous culture; G1 phase expression; inverse-growth associated production;
D O I
10.1023/A:1008069312131
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Protein synthesis in mammalian cells can be observed in two strikingly different patterns: 1) production of monoclonal antibodies in hybridoma cultures is typically inverse growth associated and 2) production of most therapeutic glycoproteins in recombinant mammalian cell cultures is found to be growth associated. Production of monoclonal antibodies has been easily maximized by culturing hybridoma cells at very low growth rates in high cell density fed-batch or perfusion bioreactors. Applying the same bioreactor techniques to recombinant mammalian cell cultures results in drastically reduced production rates due to their growth associated production kinetics. Optimization of such growth associated production requires high cell growth conditions, such as in repeated batch cultures or chemostat cultures with attendant excess biomass synthesis. Our recent research has demonstrated that this growth associated production in recombinant Chinese hamster ovary (CHO) cells is related to the S (DNA synthesis)phase specific production due to the SV40 early promoter commonly used for driving the foreign gene expression. Using the stably transfected CHO cell lines synthesizing an intracellular reporter protein under the control of SV40 early promoter, we have recently demonstrated in batch and continuous cultures that the product synthesis is growth associated. We have now replaced this S-phase specific promoter in new expression vectors with the adenovirus major late promoter which was found to be active primarily in the G1-phase and is expected to yield the desirable inverse growth associated production behavior. Our results in repeated batch cultures show that the protein synthesis kinetics in this resulting CHO cell line is indeed inverse growth associated. Results from continuous and high cell density perfusion culture experiments also indicate a strong inverse growth associated protein synthesis. The bioreactor optimization with this desirable inverse growth associated production behavior would be much simpler than bioreactor operation for cells with growth associated production.
引用
收藏
页码:73 / 80
页数:8
相关论文
共 50 条
  • [1] Engineering Chinese hamster ovary (CHO) cells to achieve an inverse growth – associated production of a foreign protein, β-galactosidase
    Frank W. F. Lee
    Cynthia B. Elias
    Paul Todd
    Dhinakar S. Kompala
    Cytotechnology, 1998, 28 : 73 - 80
  • [2] Erythropoietin enhancer stimulates production of a recombinant protein by Chinese hamster ovary (CHO) cells under hypoxic condition
    Sung-Kwon Moon
    Shunsuke Takeuchi
    Taiho Kambe
    Terumasa Tsuchiya
    Seiji Masuda
    Masaya Nagao
    Ryuzo Sasaki
    Cytotechnology, 1997, 25 : 79 - 88
  • [3] Erythropoietin enhancer stimulates production of a recombinant protein by Chinese hamster ovary (CHO) cells under hypoxic condition
    Moon, SK
    Takeuchi, S
    Kambe, T
    Tsuchiya, T
    Masuda, S
    Nagao, M
    Sasaki, R
    CYTOTECHNOLOGY, 1997, 25 (1-3) : 79 - 88
  • [4] Enhancing protein production and growth in chinese hamster ovary cells through miR-107 overexpression
    Maryam Jari
    Shahriyar Abdoli
    Zahra Bazi
    Fatemeh Tash Shamsabadi
    Farnaz Roshanmehr
    Majid Shahbazi
    AMB Express, 14
  • [5] Enhancing protein production and growth in chinese hamster ovary cells through miR-107 overexpression
    Jari, Maryam
    Abdoli, Shahriyar
    Bazi, Zahra
    Shamsabadi, Fatemeh Tash
    Roshanmehr, Farnaz
    Shahbazi, Majid
    AMB EXPRESS, 2024, 14 (01)
  • [6] Improved recombinant protein production by regulation of transcription and protein transport in Chinese hamster ovary cells
    Kaiming Chen
    Dong Li
    Hongwen Li
    Bing Li
    Ruiqin Wang
    Lingxiao Jiang
    Lei Huang
    Xiaoqing Xu
    Jie Li
    Fei Teng
    Cizhong Jiang
    Hua Gu
    Jianmin Fang
    Biotechnology Letters, 2019, 41 : 719 - 732
  • [7] Enhancing and stabilizing monoclonal antibody production by Chinese hamster ovary (CHO) cells with optimized perfusion culture strategies
    Liang, Kexue
    Luo, Hongzhen
    Li, Qi
    FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2023, 11
  • [8] Improved recombinant protein production by regulation of transcription and protein transport in Chinese hamster ovary cells
    Chen, Kaiming
    Li, Dong
    Li, Hongwen
    Li, Bing
    Wang, Ruiqin
    Jiang, Lingxiao
    Huang, Lei
    Xu, Xiaoqing
    Li, Jie
    Teng, Fei
    Jiang, Cizhong
    Gu, Hua
    Fang, Jianmin
    BIOTECHNOLOGY LETTERS, 2019, 41 (6-7) : 719 - 732
  • [9] Combined gene and environmental engineering offers a synergetic strategy to enhance r-protein production in Chinese hamster ovary cells
    Torres, Mauro
    Dickson, Alan J.
    BIOTECHNOLOGY AND BIOENGINEERING, 2022, 119 (02) : 550 - 565
  • [10] Metabolic engineering of Chinese hamster ovary cells: Towards a bioengineered heparin
    Baik, Jong Youn
    Gasimli, Leyla
    Yang, Bo
    Datta, Payel
    Zhang, Fuming
    Glass, Charles A.
    Esko, Jeffrey D.
    Linhardt, Robert J.
    Sharfstein, Susan T.
    METABOLIC ENGINEERING, 2012, 14 (02) : 81 - 90