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January 1, 1990Nucleic Acids Research2,152 citationsOpen Access

Advanced mammalian gene transfer: high titre retroviral vectors with multiple drug selection markers and a complementary helper-free packaging cell line

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JMJay P. MorgensternHLHartmut Land

Key Points

  • The study aims to develop an efficient gene transfer system using retroviral vectors in mammalian cells to enhance gene expression.
  • Developed high titre retroviral vectors based on Moloney murine leukemia virus (Mo MuLV).
  • Constructed vectors with four selectable markers for drug resistance in mammalian cells.
  • Generated a helper-free packaging cell line (omega E) to minimize wild type virus risk.
  • The pBabe vectors achieved high gene transfer efficiency without diminishing recombinant titres.
  • The omega E cell line reduced risk of generating wild type virus through careful design and codon wobbling.
  • Co-expression of multiple genes within a single cell was successfully demonstrated with the novel system.

Abstract

We report the development of an advanced system for transfer and expression of exogenous genes in mammalian cells based on Moloney murine leukemia virus (Mo MuLV). Extensive deletion/mutagenesis analysis to identify cis-acting signals involved in virus transmission has led to the design of a family of novel, highly efficient retroviral vectors and a partner helper-free packaging cell line. The pBabe retroviral vector constructs transmit inserted genes at high titres and express them from the Mo MuLV Long Terminal Repeat (LTR). Each of these vectors has been constructed with one of four different dominantly acting selectable markers, allowing the growth of infected mammalian cells in the presence of G418, hygromycin B, bleomycin/phleomycin or puromycin, respectively. The high titre ecotropic helper free packaging cell line, omega E, was designed in conjunction with the pBabe vectors to reduce the risk of generation of wild type Mo MuLV via homologous recombination events. The omega E cell line was generated with separate gagpol and ecotropic env expression constructs with minimal sequence overlap and decreased sequence homology achieved by 'codon wobbling'. Homologous env coding sequences were deleted from the pBabe vectors without diminishing recombinant vector titre. Together, the pBabe vectors and omega E cell line should prove useful in experiments where highest frequencies of gene transfer, or concomitant expression of several different genes within a single cell are required with minimal risk of helper virus contamination.

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Cite This Study

Morgenstern et al. (1990) studied this question.

synapsesocial.com/papers/6a0cb5b55712c53037e8c5cehttps://doi.org/10.1093/nar/18.12.3587
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