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STEP® vectors for rapid generation of stable transfected CHO cell pools and clones with high expression levels and product quality homogeneity of difficult-to-express proteins.
Luthra, Abhinav; Spanjaard, Remco A; Cheema, Sarwat; Veith, Nathalie; Kober, Lars; Wang, Yiding; Jing, Tao; Zhao, Yi; Hoeksema, Femke; Yallop, Chris; Havenga, Menzo; Bakker, Wilfried A M.
Afiliação
  • Luthra A; Batavia Biosciences Inc., 300 Trade Center Suite 6650, Woburn, MA, USA.
  • Spanjaard RA; Batavia Biosciences Inc., 300 Trade Center Suite 6650, Woburn, MA, USA.
  • Cheema S; Batavia Biosciences Inc., 300 Trade Center Suite 6650, Woburn, MA, USA.
  • Veith N; UGA Biopharma GmbH, Neuendorfstraße 20a, 16761, Hennigsdorf, Germany.
  • Kober L; UGA Biopharma GmbH, Neuendorfstraße 20a, 16761, Hennigsdorf, Germany.
  • Wang Y; COPro Bio, Room 301, Tsinghua SEM X-elerator, No.36 Haidian Xi Road, Haidian District, Beijing, China.
  • Jing T; COPro Bio, Room 301, Tsinghua SEM X-elerator, No.36 Haidian Xi Road, Haidian District, Beijing, China.
  • Zhao Y; COPro Bio, Room 301, Tsinghua SEM X-elerator, No.36 Haidian Xi Road, Haidian District, Beijing, China.
  • Hoeksema F; Batavia Biosciences Inc., 300 Trade Center Suite 6650, Woburn, MA, USA.
  • Yallop C; Batavia Biosciences Inc., 300 Trade Center Suite 6650, Woburn, MA, USA.
  • Havenga M; Batavia Biosciences Inc., 300 Trade Center Suite 6650, Woburn, MA, USA.
  • Bakker WAM; Batavia Biosciences Inc., 300 Trade Center Suite 6650, Woburn, MA, USA. Electronic address: w.bakker@bataviabiosciences.com.
Protein Expr Purif ; 186: 105920, 2021 10.
Article em En | MEDLINE | ID: mdl-34044134
ABSTRACT
Many proteins produced in CHO cells need evaluation for their clinical and commercial potential. Traditional methods based on stable clone generation are slow and unsuitable for screening larger numbers of proteins, while transient expression technologies are fast but unpredictable regarding product quality and lacking an optional path to subcloning. The STEP® vector technology introduced here combines the best properties of both methods. STEP® vectors contain a strong transcriptional cassette driving expression of a bicistronic mRNA. The gene-of-interest (GOI) is cloned upstream of a functionally impaired zeocin resistance gene (FI-Zeo) whose translation is coupled to that of the GOI through an IRES. Stable transfected cells surviving zeocin selection produce high levels of FI-Zeo and thus, high levels of the GOI-encoded protein. By using different spacers, the translational coupling efficiency and selection strength can be controlled allowing maximization of expression of any GOI. Production of laronidase and factor VII (FVII) is presented as examples of unrelated, difficult-to-express (DTE) proteins. First step is rapid generation of transfected pools with the STEP® vectors. All high expressing surviving pools showed high product quality homogeneity as did monoclonal cell lines obtained from the top pools. Up to 500 µg/mL laronidase was obtained with virtually identical glycosylation profile as reference product. For FVII, cell specific productivity of 0.45 pg/cell/day with 50 IU/µg protein matched highest reported levels of reference product even before process development. Taken together, STEP® vector technology is ideally suited for rapid, small to large-scale production of DTE proteins compared to traditional methods.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Plasmídeos / Proteínas Recombinantes / Vetores Genéticos Limite: Animals Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Plasmídeos / Proteínas Recombinantes / Vetores Genéticos Limite: Animals Idioma: En Ano de publicação: 2021 Tipo de documento: Article