Related Experiment Video
Updated: Jul 10, 2025

Utilizing Murine Inducible Telomerase Alleles in the Studies of Tissue Degeneration/Regeneration and Cancer
Published on: April 13, 2015
Targeting oncogenic TERT promoter variants by allele-specific epigenome editing
Alexandra G Kouroukli1, Nivethika Rajaram2, Pavel Bashtrykov2
1Institute of Human Genetics, Ulm University and Ulm University Medical Center, Albert-Einstein-Allee 11, 89081, Ulm, Germany.
Background:
Activation of dominant oncogenes by small or structural genomic alterations is a common driver mechanism in many cancers. Silencing of such dominantly activated oncogenic alleles, thus, is a promising strategy to treat cancer. Recently, allele-specific epigenome editing (ASEE) has been described as a means to reduce transcription of genes in an allele-specific manner. In cancer, specificity to an oncogenic allele can be reached by either targeting directly a pathogenic single-nucleotide variant or a polymorphic single-nucleotide variant linked to the oncogenic allele. To investigate the potential of ASEE in cancer, we here explored this approach by targeting variants at the TERT promoter region. The TERT promoter region has been described as one of the most frequently mutated non-coding cancer drivers.
Results:
Sequencing of the TERT promoter in cancer cell lines showed 53% (41/77) to contain at least one heterozygous sequence variant allowing allele distinction. We chose the hepatoblastoma cell line Hep-G2 and the lung cancer cell line A-549 for this proof-of-principle study, as they contained two different kinds of variants, namely the activating mutation C228T in the TERT core promoter and the common SNP rs2853669 in the THOR region, respectively. These variants were targeted in an allele-specific manner using sgRNA-guided dCas9-DNMT3A-3L complexes. In both cell lines, we successfully introduced DNA methylation specifically to the on-target allele of the TERT promoter with limited background methylation on the off-target allele or an off-target locus (VEGFA), respectively. We observed a maximum CpG methylation gain of 39% and 76% on the target allele when targeting the activating mutation and the common SNP, respectively. The epigenome editing translated into reduced TERT RNA expression in Hep-G2.
Conclusions:
We applied an ASEE-mediated approach to silence TERT allele specifically. Our results show that the concept of dominant oncogene inactivation by allele-specific epigenome editing can be successfully translated into cancer models. This new strategy may have important advantages in comparison with existing therapeutic approaches, e.g., targeting telomerase, especially with regard to reducing adverse side effects.
Insights
Allele-specific epigenome editing (ASEE) successfully silenced cancer-driving TERT promoter mutations in cell models. This approach offers a targeted strategy for dominant oncogene inactivation, potentially reducing side effects compared to current cancer therapies.
Area of Science:
- Genomics
- Epigenetics
- Cancer Biology
Background:
- Dominant oncogene activation by genomic alterations drives cancer.
- Silencing these oncogenes is a promising cancer treatment strategy.
- Allele-specific epigenome editing (ASEE) reduces gene transcription in an allele-specific manner.
Purpose of the Study:
- To investigate the potential of ASEE for cancer treatment by targeting TERT promoter variants.
- To explore ASEE's efficacy in allele-specifically silencing oncogenic TERT alleles.
Main Methods:
- Targeted TERT promoter variants in cancer cell lines (Hep-G2, A-549) using sgRNA-guided dCas9-DNMT3A-3L complexes.
- Introduced allele-specific DNA methylation to silence oncogenic TERT alleles.
- Quantified CpG methylation gain and TERT RNA expression changes.
Main Results:
- 53% of TERT promoter sequences in cancer cell lines harbored heterozygous variants.
- Achieved specific DNA methylation on target TERT promoter alleles (up to 76% gain).
- Demonstrated reduced TERT RNA expression in Hep-G2 cells following ASEE.
Conclusions:
- ASEE successfully silenced oncogenic TERT alleles in cancer models.
- This approach demonstrates the feasibility of dominant oncogene inactivation via ASEE.
- ASEE presents a novel therapeutic strategy with potential advantages over existing treatments like telomerase inhibition, particularly in minimizing adverse effects.
Related Concept Videos
Conservative Site-specific Recombination and Phase Variation
The recognition sites for Cre recombinase called LoxP...
Targeted Cancer Therapies
There are several types of targeted therapies against...
In-vitro Mutagenesis

