We previously utilized a Sleeping Beauty (SB) transposon mutagenesis screen to discover novel drivers of HCC. This approach identified recurrent mutations within the Dlk1-Dio3 imprinted domain, indicating that alteration of one or more elements within the domain provides a selective advantage to cells during the process of hepatocarcinogenesis. For the current study, we performed transcriptome and small RNA sequencing to profile gene expression in SB–induced HCCs in an attempt to clarify the genetic element(s) contributing to tumorigenesis. We identified strong induction of Retrotransposon-like 1 (Rtl1) expression as the only consistent alteration detected in all SB–induced tumors with Dlk1-Dio3 integrations, suggesting that Rtl1 activation serves as a driver of HCC. While previous studies have identified correlations between disrupted expression of multiple Dlk1-Dio3 domain members and HCC, we show here that direct modulation of a single domain member, Rtl1, can promote hepatocarcinogenesis in vivo. Overexpression of Rtl1 in the livers of adult mice using a hydrodynamic gene delivery technique resulted in highly penetrant (86%) tumor formation. Additionally, we detected overexpression of RTL1 in 30% of analyzed human HCC samples, indicating the potential relevance of this locus as a therapeutic target for patients. The Rtl1 locus is evolutionarily derived from the domestication of a retrotransposon. In addition to identifying Rtl1 as a novel driver of HCC, our study represents one of the first direct in vivo demonstrations of a role for such a co-opted genetic element in promoting carcinogenesis.
Journal article
Identification of Rtl1, a Retrotransposon-Derived Imprinted Gene, as a Novel Driver of Hepatocarcinogenesis
PLoS genetics, Vol.9(4), pp.1-10
04/04/2013
DOI: 10.1371/journal.pgen.1003441
PMCID: PMC3616914
PMID: 23593033
Abstract
Details
- Title: Subtitle
- Identification of Rtl1, a Retrotransposon-Derived Imprinted Gene, as a Novel Driver of Hepatocarcinogenesis
- Creators
- Jesse D Riordan - University of IowaVincent W Keng - The Hong Kong Polytechnic UniversityBarbara R Tschida - University of Minnesota - Twin CitiesTodd E Scheetz - University of IowaJason B Bell - University of Minnesota - Twin CitiesKelly M Podetz-Pedersen - University of Minnesota - Twin CitiesCatherine D Moser - ayo Clinic and Mayo Clinic Cancer CenterNeal G Copeland - The Methodist Hospital Research InstituteNancy A Jenkins - The Methodist Hospital Research InstituteLewis R Roberts - Mayo Clinic and Mayo Clinic Cancer CenterDavid A Largaespada - University of Minnesota - Twin CitiesAdam J Dupuy - University of Iowa
- Resource Type
- Journal article
- Publication Details
- PLoS genetics, Vol.9(4), pp.1-10
- DOI
- 10.1371/journal.pgen.1003441
- PMID
- 23593033
- PMCID
- PMC3616914
- ISSN
- 1553-7390
- eISSN
- 1553-7404
- Copyright
- Copyright: © 2013 Riordan et al.
- Grant note
- Grant support\r\nR01 CA113636/CA/NCI NIH HHS/United States\r\nR01 CA132962/CA/NCI NIH HHS/United States\r\nT32 AI083196/AI/NIAID NIH HHS/United States\r\nR01CA132962/CA/NCI NIH HHS/United States
- Language
- English
- Date published
- 04/04/2013
- Academic Unit
- Roy J. Carver Department of Biomedical Engineering; Electrical and Computer Engineering; Anatomy and Cell Biology; Pathology; Ophthalmology and Visual Sciences
- Record Identifier
- 9983557798302771
Metrics
116 File views/ downloads
40 Record Views