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Updated: Sep 14, 2025

Detection of Retrotransposition Activity of Hot LINE-1s by Long-Distance Inverse PCR
Published on: July 27, 2019
Expression of LTR and LINE1 transposable elements defines atypical teratoid/rhabdoid tumor subtypes
Martin V Hamann1, Shweta Godbole2,3, Maisha Adiba1
1Leibniz Institute of Virology (LIV), Hamburg, Germany.
Abstract:
Atypical teratoid rhabdoid tumors (ATRTs) are aggressive central nervous system tumors mainly affecting young children. Extensive molecular characterization based on gene expression and DNA methylation patterns has solidly established three major ATRT subtypes (MYC, SHH and TYR), which show distinct clinical features, setting the basis for more effective, targeted treatment regimens. Transcriptional activity of transposable elements (TEs), like LINE1s and LTRs, is tightly linked with human cancers as a direct consequence of lifting epigenetic repression over TEs. The sole recurrent biallelic loss-of-function mutation in SMARCB1 in ATRTs, a core component of the SWI/SNF chromatin remodeling complex, raises the question of how TE transcription contributes to ATRT development. Here, we comprehensively investigate the transcriptional profiles of 1.9M LINE1 and LTR elements across ATRT subtypes in primary human samples. We find TE transcription profiles allow sample stratification into ATRT subtypes. The TE activity signature in the ATRT-MYC subtype is unique, setting these tumors apart from SHH and TYR ATRTs. More specifically, ATRT-MYC show broadly reduced transcript levels of LINE1 and ERVL-MaLR subfamilies. ATRT-MYC also displayed significantly less LTR and LINE1 loci with bidirectional promoter activity. Furthermore, we identify 849 differentially transcribed TEs in primary samples, which are predictive towards established ATRT-SHH and -MYC cell line models. In summary, including TE transcription profiles into the molecular characterization of ATRTs might reveal new tumor vulnerabilities leading to novel therapeutic interventions, such as immunotherapy.
Insights
Transposable element (TE) transcription profiles help classify atypical teratoid rhabdoid tumors (ATRTs). ATRT-MYC tumors show a unique TE signature, distinct from other subtypes, offering potential therapeutic targets.
Area of Science:
- Oncology
- Genomics
- Epigenetics
Background:
- Atypical teratoid rhabdoid tumors (ATRTs) are aggressive pediatric central nervous system cancers.
- Three molecular subtypes (MYC, SHH, TYR) of ATRTs are known, guiding treatment.
- Epigenetic dysregulation in cancer can activate transposable elements (TEs).
Purpose of the Study:
- To investigate the role of transposable element (TE) transcription in ATRT subtypes.
- To determine if TE transcription profiles can aid in classifying ATRTs.
- To identify potential therapeutic vulnerabilities related to TE activity in ATRTs.
Main Methods:
- Comprehensive analysis of LINE1 and LTR element transcriptional profiles in primary human ATRT samples.
- Comparison of TE transcription across ATRT-MYC, ATRT-SHH, and ATRT-TYR subtypes.
- Identification of differentially transcribed TEs predictive of ATRT subtypes.
Main Results:
- TE transcription profiles effectively stratify ATRT samples into subtypes.
- ATRT-MYC tumors exhibit a unique TE activity signature, with reduced LINE1 and ERVL-MaLR subfamily transcription.
- Fewer LTR and LINE1 loci with bidirectional promoter activity were observed in ATRT-MYC.
- 849 differentially transcribed TEs were identified, predicting ATRT-SHH and ATRT-MYC cell line models.
Conclusions:
- TE transcription patterns are valuable for molecular characterization of ATRTs.
- The unique TE signature in ATRT-MYC suggests subtype-specific mechanisms.
- Targeting TE transcription may offer novel therapeutic strategies for ATRTs, including immunotherapy.
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