Spotlight on hTERT Complex Regulation in Cutaneous T-Cell Lymphomas

As a major cancer hallmark, there is a sustained interest in understanding the telomerase contribution to carcinogenesis in order to therapeutically target this enzyme. This is particularly relevant in primary cutaneous T-cell lymphomas (CTCL), a malignancy showing telomerase dysregulation with few...

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Veröffentlicht in:Genes 2023-02, Vol.14 (2), p.439
Hauptverfasser: Ropio, Joana, Prochazkova-Carlotti, Martina, Batista, Rui, Pestana, Ana, Chebly, Alain, Ferrer, Jacky, Idrissi, Yamina, Cappellen, David, Durães, Cecília, Boaventura, Paula, Vinagre, João, Azzi-Martin, Lamia, Poglio, Sandrine, Cabeçadas, José, Campos, Manuel António, Beylot-Barry, Marie, Sobrinho-Simões, Manuel, Merlio, Jean-Philippe, Soares, Paula, Chevret, Edith
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Sprache:eng
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Zusammenfassung:As a major cancer hallmark, there is a sustained interest in understanding the telomerase contribution to carcinogenesis in order to therapeutically target this enzyme. This is particularly relevant in primary cutaneous T-cell lymphomas (CTCL), a malignancy showing telomerase dysregulation with few investigative data available. In CTCL, we examined the mechanisms involved in telomerase transcriptional activation and activity regulation. We analyzed 94 CTCL patients from a Franco-Portuguese cohort, as well as 8 cell lines, in comparison to 101 healthy controls. Our results showed that not only polymorphisms (SNPs) located at the promoter of human telomerase reverse transcriptase ( gene (rs2735940 and rs2853672) but also an SNP located within the coding region (rs2853676) could influence CTCL occurrence. Furthermore, our results sustained that the post-transcriptional regulation of contributes to CTCL lymphomagenesis. Indeed, CTCL cells present a different pattern of spliced transcripts distribution from the controls, mostly marked by an increase in the β+ variants proportion. This increase seems to be associated with CTCL development and progression. Through splicing transcriptome modulation with shRNAs, we observed that the decrease in the α-β+ transcript induced a decrease in the cell proliferation and tumorigenic capacities of T-MF cells in vitro. Taken together, our data highlight the major role of post-transcriptional mechanisms regulating telomerase non canonical functions in CTCL and suggest a new potential role for the α-β+ transcript variant.
ISSN:2073-4425
2073-4425
DOI:10.3390/genes14020439