| Literature DB >> 19144171 |
Leander Blaas1, Monica Musteanu, Robert Eferl, Anton Bauer, Emilio Casanova.
Abstract
BACKGROUND: The development of appropriate expression vectors for large scale protein production constitutes a critical step in recombinant protein production. The use of conventional expression vectors to obtain cell lines is a cumbersome procedure. Often, stable cell lines produce low protein yields and production is not stable over the time. These problems are due to silencing of randomly integrated expression vectors by the surrounding chromatin. To overcome these chromatin effects, we have employed a Bacterial Artificial Chromosome (BAC) as expression vector to obtain stable cell lines suitable for protein production.Entities:
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Year: 2009 PMID: 19144171 PMCID: PMC2653024 DOI: 10.1186/1472-6750-9-3
Source DB: PubMed Journal: BMC Biotechnol ISSN: 1472-6750 Impact factor: 2.563
Figure 1Use of a Bacterial Artificial Chromosome (BAC) as vector backbone for recombinant protein production. A) Schematic representation of the constructs used for protein production. CAGGS Fc is a conventional expression vector containing a CAGGS promoter, the Fc region of the human IgG1 gene, an IRES-eYFP-SV40 polyA reporter element and a PGK neomycin cassette. The Rosa26BAC CAGGS Fc construct was generated by recombining the CAGGS Fc vector into a BAC containing the Rosa26 locus. The CAGGS Fc vector was placed into the exon 2 of antisense transcript of the Rosa26 locus with 100 kb upstream and downstream sequence. B) Comparison of the efficacy in protein production between a conventional vector and a BAC-based vector. The Fc yield was analyzed in HEK 293 bulk cultures generated with the CAGGS Fc and Rosa26BAC CAGGS Fc vectors. The CAGGS Fc vector gave a yield of 0.5 pg/cell/day, while the BAC-based vector gave a yield of 5.7 pg/cell/day. Measurements were performed in triplicate. Error bars represent the standard deviation.
Figure 2Protein expression using a BAC as vector backbone is transgene copy-number dependent and it is stable over time. A) Correlation between protein production and integrated BAC transgene copies. Analysis of 12 single clones showed a copy number range from 1 to 55 for the Rosa26BAC CAGGS Fc vector with a Fc yield of 5.5 to 30 pg/cell/day. The protein production was directly proportional to the BAC transgene copy number. B) Protein production is stably maintained during culture passaging. The yield of Fc protein was measured at passage 1 and passage 30 in 6 subclones isolated from the Rosa26BAC CAGGS Fc cultures. No obvious differences were found. Error bars represent the standard deviation.