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High-throughput retroviral tagging to identify components of specific signaling pathways in cancer
Harald Mikkers1, John Allen, Puck Knipscheer
1Division of Molecular Genetics and Centre of Biomedical Genetics, Netherlands Cancer Institute, Plesmanlaan 121, 1066 CX Amsterdam, The Netherlands.
Abstract:
Genetic screens carried out in lower organisms such as yeast, Drosophila melanogaster and Caenorhabditis elegans have revealed many signaling pathways. For example, components of the RAS signaling cascade were identified using a mutant eye phenotype in D. melanogaster as a readout. Screening is usually based on enhancing or suppressing a phenotype by way of a known mutation in a particular signaling pathway. Such in vivo screens have been difficult to carry out in mammals, however, owing to their relatively long generation times and the limited number of animals that can be screened. Here we describe an in vivo mammalian genetic screen used to identify components of pathways contributing to oncogenic transformation. We applied retroviral insertional mutagenesis in Myc transgenic (E mu Myc) mice lacking expression of Pim1 and Pim2 to search for genes that can substitute for Pim1 and Pim2 in lymphomagenesis. We determined the chromosomal positions of 477 retroviral insertion sites (RISs) derived from 38 tumors from E mu Myc Pim1(-/-) Pim2(-/-) mice and 27 tumors from E mu Myc control mice using the Ensembl and Celera annotated mouse genome databases. There were 52 sites occupied by proviruses in more than one tumor. These common insertion sites (CISs) are likely to contain genes contributing to tumorigenesis. Comparison of the RISs in tumors of Pim-null mice with the RISs in tumors of E mu Myc control mice indicated that 10 of the 52 CISs belong to the Pim complementation group. In addition, we found that Pim3 is selectively activated in Pim-null tumor cells, which supports the validity of our approach.
Insights
This study developed a novel in vivo mammalian genetic screen to identify cancer-driving genes. The screen identified new components of oncogenic pathways, including Pim3 activation in specific tumor cells.
Area of Science:
- Genetics
- Oncology
- Molecular Biology
Background:
- Genetic screens in model organisms have identified key signaling pathways.
- Mammalian in vivo screens are challenging due to long generation times and limited throughput.
- Identifying genes involved in oncogenic transformation is crucial for cancer research.
Purpose of the Study:
- To establish and utilize an in vivo mammalian genetic screen for identifying genes involved in oncogenic transformation.
- To discover novel components of signaling pathways contributing to cancer development.
- To investigate the role of Pim kinases in lymphomagenesis.
Main Methods:
- Employed retroviral insertional mutagenesis in Myc transgenic mice lacking Pim1 and Pim2.
- Analyzed 477 retroviral insertion sites (RISs) from tumors using genome databases.
- Identified common insertion sites (CISs) indicative of genes contributing to tumorigenesis.
Main Results:
- Identified 52 common insertion sites (CISs) across multiple tumors.
- Discovered that 10 of these CISs are part of the Pim complementation group.
- Found selective activation of Pim3 in tumor cells lacking Pim1 and Pim2.
Conclusions:
- The developed in vivo mammalian screen is effective for identifying cancer-related genes.
- Pim kinases play a significant role in lymphomagenesis.
- Pim3 activation is a compensatory mechanism in the absence of Pim1 and Pim2.