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Genetic screens in mammalian cells by enhanced retroviral mutagens
1Verna and Marrs Mclean Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, Texas 77030, USA.
Abstract:
Genetic approaches such as retrovirus-mediated mutagenesis and cDNA expression libraries have contributed greatly to our understanding of signal transduction in mammalian cells. However, previously described methods for retroviral insertional mutagenesis are hindered by low mutagenesis rates and difficulties in cloning mutated genes. cDNA expression library methods are usually cell-type dependent and bias towards abundant and short messages. With the near completion of the genome projects, alternative genetic methods are needed where large numbers of genes can be more easily isolated and biochemically studied. We have developed a novel retrovirus-mediated genetic screening method in cultured cells. To achieve efficient and regulated mutagenesis, we constructed Enhanced Retroviral Mutagen (ERM) vectors that contained several engineered sequences (e.g., an ERM Tag and a splice donor) controlled by a tetracycline-responsive promoter. Endogenous genes can thus be randomly activated and tagged in a conditional system. NIH3T3 cells were used to screen for focus-forming genes using the ERM strategy. We showed that these added sequences increased the screening efficiency by >10-fold, and allowed more direct identification of the genes targeted. Sequence analysis of approximately 10% of the >600 focus clones recovered revealed both known oncogenes and novel factors such as protein kinases and GTP/GDP exchange proteins. The ERM strategy should help to facilitate large-scale gene identification in diverse pathways and integrate both genetic (with the completion of the genome projects) and functional information more readily.
Insights
We developed Enhanced Retroviral Mutagen (ERM) vectors for efficient gene discovery. This novel method significantly improves screening efficiency for identifying novel genes involved in cellular pathways.
Area of Science:
- Molecular Biology
- Genetics
- Cell Biology
Background:
- Established genetic methods like retroviral mutagenesis and cDNA libraries have limitations.
- Retroviral insertional mutagenesis suffers from low rates and cloning difficulties.
- cDNA libraries are cell-type dependent and biased towards abundant, short messages.
Purpose of the Study:
- To develop a novel, efficient retrovirus-mediated genetic screening method.
- To overcome limitations of existing genetic screening approaches.
- To facilitate large-scale gene identification and biochemical study.
Main Methods:
- Constructed Enhanced Retroviral Mutagen (ERM) vectors with engineered sequences (ERM Tag, splice donor) under tetracycline-responsive promoter control.
- Utilized NIH3T3 cells for screening focus-forming genes via the ERM strategy.
- Enabled conditional, random activation and tagging of endogenous genes.
Main Results:
- ERM strategy increased screening efficiency by over 10-fold.
- Allowed for more direct identification of targeted genes.
- Analysis of >600 clones revealed known oncogenes and novel factors like protein kinases and GTP/GDP exchange proteins.
Conclusions:
- The ERM strategy offers a powerful tool for large-scale gene identification.
- Facilitates integration of genetic and functional information.
- Supports diverse pathway research in the post-genomic era.