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Published on: March 31, 2015
Genomic amplification of an endogenous retrovirus in zebrafish T-cell malignancies
J Kimble Frazer1, Lance A Batchelor, Diana F Bradley
1Department of Pediatrics, University of Utah, Salt Lake City, UT 84112, USA.
Abstract:
Genomic instability plays a crucial role in oncogenesis. Somatically acquired mutations can disable some genes and inappropriately activate others. In addition, chromosomal rearrangements can amplify, delete, or even fuse genes, altering their functions and contributing to malignant phenotypes. Using array comparative genomic hybridization (aCGH), a technique to detect numeric variations between different DNA samples, we examined genomes from zebrafish (Danio rerio) T-cell leukemias of three cancer-prone lines. In all malignancies tested, we identified recurring amplifications of a zebrafish endogenous retrovirus. This retrovirus, ZFERV, was first identified due to high expression of proviral transcripts in thymic tissue from larval and adult fish. We confirmed ZFERV amplifications by quantitative PCR analyses of DNA from wild-type fish tissue and normal and malignant D. rerio T cells. We also quantified ZFERV RNA expression and found that normal and neoplastic T cells both produce retrovirally encoded transcripts, but most cancers show dramatically increased transcription. In aggregate, these data imply that ZFERV amplification and transcription may be related to T-cell leukemogenesis. Based on these data and ZFERV's phylogenetic relation to viruses of the murine-leukemia-related virus class of gammaretroviridae, we posit that ZFERV may be oncogenic via an insertional mutagenesis mechanism.
Insights
Genomic instability drives cancer. In zebrafish T-cell leukemia, researchers found amplifications of a zebrafish endogenous retrovirus (ZFERV), suggesting it may cause cancer through insertional mutagenesis.
Area of Science:
- Oncology
- Genetics
- Virology
Background:
- Genomic instability is a hallmark of cancer, involving mutations and chromosomal rearrangements.
- These alterations can disable tumor suppressor genes or activate oncogenes, leading to malignant phenotypes.
Purpose of the Study:
- To investigate the role of genomic alterations in zebrafish T-cell leukemogenesis.
- To identify specific genetic events associated with cancer development in zebrafish models.
Main Methods:
- Array comparative genomic hybridization (aCGH) was used to detect numeric variations in zebrafish T-cell leukemia genomes.
- Quantitative PCR (qPCR) was employed to confirm ZFERV amplifications and quantify RNA expression.
Main Results:
- Recurring amplifications of a zebrafish endogenous retrovirus (ZFERV) were identified in all tested zebrafish T-cell leukemias.
- ZFERV amplifications were confirmed by qPCR in both normal and malignant zebrafish T cells.
- While normal and neoplastic T cells express ZFERV transcripts, cancer cells exhibit dramatically increased transcription.
Conclusions:
- ZFERV amplification and increased transcription are potentially linked to T-cell leukemogenesis in zebrafish.
- Phylogenetic analysis suggests ZFERV belongs to the gammaretroviridae family, implying potential oncogenicity via insertional mutagenesis.
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