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Updated: Jan 22, 2026

Generation of Cancer Cell Clones to Visualize Telomeric Repeat-containing RNA TERRA Expressed from a Single Telomere in Living Cells
Published on: January 17, 2019
Inhibiting TRF1 upstream signaling pathways to target telomeres in cancer cells
Julien Cherfils-Vicini1, Eric Gilson1,2
1Université Côte d'Azur (UCA), Centre National de la Recherche Scientifique (CNRS) UMR7284, Institut National de la Santé et de la Recherche Médicale (INSERM) U1081, Institute for Research on Cancer and Aging, Nice (IRCAN), Nice, France.
Abstract:
In the context of tumorigenesis, telomere shortening is associated with apparent antagonistic outcomes: On one side, it favors cancer initiation through mechanisms involving genome instability, while on the other side, it prevents cancer progression, due to the activation of the DNA damage response (DDR) checkpoint behaving as a cell-intrinsic proliferation barrier. Consequently, telomerase, which can compensate for replicative erosion by adding telomeric DNA repeats at the chromosomal DNA extremities, is crucial for cancer progression and is upregulated in nearly 90% of human cancers. Therefore, telomeres are considered potential anti-cancer targets and, to date, most of the studies have focused on telomerase inhibition. However, the development of clinically efficient telomerase targeting therapies is still in its infancy. In this context, the findings reported in this issue of EMBO Molecular Medicine by Bejarano et al (2019) open new avenues for alternative telomere therapies.
Insights
Telomere shortening has dual roles in cancer, promoting initiation but hindering progression. New research explores alternative telomere therapies beyond telomerase inhibition for cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Telomere shortening plays a complex role in tumorigenesis, promoting cancer initiation via genome instability.
- It also acts as a barrier to cancer progression by activating the DNA damage response (DDR) checkpoint.
Purpose of the Study:
- To explore alternative therapeutic strategies targeting telomeres in cancer.
- To investigate novel approaches beyond direct telomerase inhibition.
Main Methods:
- The study by Bejarano et al. (2019) introduces new findings relevant to telomere-based cancer therapies.
- Focuses on alternative strategies to telomerase inhibition.
Main Results:
- Telomerase is upregulated in approximately 90% of human cancers, highlighting its importance in cancer progression.
- Current telomerase-targeting therapies are still in early development.
Conclusions:
- Telomeres represent a promising target for anti-cancer therapies.
- The findings open new avenues for developing alternative telomere-based treatments.
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