Heterologous protein production using euchromatin-containing expression vectors in mammalian cells
Продукция гетерологичных белков с использованием экспрессионных векторов, содержащих эухроматин, в клетках млекопитающих
2015-05-14
SCID: 54.1/mr2wphmb
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Bacterial Artificial Chromosome vectorsCHO cellseuchromatin-containing expression vectorsheterologous protein productionrecombinant protein expression
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Abstract (AI)
Upon stable cell line generation, chromosomal integration site of the vector DNA has a major impact on transgene expression. Here we apply an active gene environment, rather than specified genetic elements, in expression vectors used for random integration. We generated a set of Bacterial Artificial Chromosome (BAC) vectors with different open chromatin regions, promoters and gene regulatory elements and tested their impact on recombinant protein expression in CHO cells. We identified the Rosa26 BAC as the most efficient vector backbone showing a nine-fold increase in both polyclonal and clonal production of the human IgG-Fc. Clonal protein production was directly proportional to integrated vector copy numbers and remained stable during 10 weeks without selection pressure. Finally, we demonstrated the advantages of BAC-based vectors by producing two additional proteins, HIV-1 glycoprotein CN54gp140 and HIV-1 neutralizing PG9 antibody, in bioreactors and shake flasks reaching a production yield of 1 g/l.
Key Findings
1
BAC vectors incorporating active open-chromatin environments were evaluated with different promoters and regulatory elements for recombinant protein production in CHO cells.
2
BAC-based vectors enabled bioreactor and shake-flask production of HIV-1 CN54gp140 and PG9 antibody at yields reaching 1 g/l.
3
Chromosomal integration site strongly influences transgene expression in stably generated mammalian cell lines.
4
Clonal protein production was directly proportional to integrated vector copy number and remained stable for 10 weeks without selection pressure.
5
The Rosa26 BAC backbone produced a nine-fold increase in human IgG-Fc expression in both polyclonal and clonal cell populations.
Research Object
Heterologous protein production in CHO cells using euchromatin-containing BAC expression vectors
Research Subject
The effects of open chromatin regions, promoters, and gene regulatory elements on recombinant protein expression, copy-number dependence, and production stability
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2015-05-14
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