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Insertional mutagenesis of preneoplastic astrocytes by Moloney murine leukemia virus
T A Afanasieva1, V Pekarik, M Grazia D'Angelo
1Institute of Neuropathology, University of Zurich, Zurich, Switzerland.
Abstract:
Retroviral infection can induce transcriptional activation of genes flanking the sites of proviral integration in target cells. Because integration is essentially random, this phenomenon can be exploited for random mutagenesis of the genome, and analysis of integration sites in tumors may identify potential oncogenes. Here we have investigated this strategy in the context of astrocytoma progression. Neuroectodermal explants from astrocytoma-prone GFAP-v-src transgenic mice were infected with the ecotropic Moloney murine leukemia virus (Mo-MuLV). In situ hybridization and FACS analysis indicated that astrocytes from E12.5-13.5 embryos were highly susceptible to retroviral infection and expressed viral RNA and proteins both in vitro and in vivo. In average 80% of neuroectodermal cells were infected in vitro with 9-14 proviral integrations per cell. Virus mobility assays confirmed that Mo-MuLV remained transcriptionally active and replicating in neuroectodermal primary cultures even after 45 days of cultivation. Proviral insertion sites were investigated by inverse long-range PCR. Analysis of a limited number of provirus flanking sequences in clones originated from in vitro infected GFAP-v-src neuroectodermal cells identified loci of possible relevance to tumorigenesis. Therefore, the approach described here might be suitable for acceleration of tumorigenesis in preneoplastic astrocytes. We expect this method to be useful for identifying genes involved in astrocytoma development/progression in animal models.
Insights
Retroviral infection can activate nearby genes, aiding cancer gene discovery. This study used Moloney murine leukemia virus (Mo-MuLV) to infect mouse astrocytes, identifying potential astrocytoma oncogenes.
Area of Science:
- * Molecular biology
- * Genetics
- * Cancer research
Background:
- Retroviral integration can activate nearby genes, enabling random mutagenesis for oncogene discovery.
- Astrocytomas are brain tumors where understanding genetic drivers is crucial for progression.
Purpose of the Study:
- To investigate retroviral mutagenesis for identifying astrocytoma-related genes.
- To assess the utility of Moloney murine leukemia virus (Mo-MuLV) in accelerating astrocytoma development in vivo.
Main Methods:
- Infection of GFAP-v-src transgenic mouse neuroectodermal explants with Mo-MuLV.
- In situ hybridization and FACS analysis to confirm astrocyte susceptibility and viral expression.
- Inverse long-range PCR to identify proviral insertion sites.
Main Results:
- Astrocytes from E12.5-13.5 embryos showed high susceptibility to Mo-MuLV infection (80% infected).
- Mo-MuLV remained transcriptionally active and replicated in neuroectodermal cultures for over 45 days.
- Analysis of proviral flanking sequences identified loci potentially relevant to astrocytoma tumorigenesis.
Conclusions:
- Retroviral infection can accelerate tumorigenesis in preneoplastic astrocytes.
- This approach is a viable strategy for identifying genes involved in astrocytoma development and progression in animal models.