4.7 Article

TERT Promoter Mutations Increase Sense and Antisense Transcription from the TERT Promoter

期刊

BIOMEDICINES
卷 9, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/biomedicines9121773

关键词

TERT promoter mutations; Telomerase; TERT; TERT transcription; bidirectional promoter; lncRNA TAPAS

资金

  1. Ministere de l'Education et de la Recherche du Luxembourg
  2. Fonds National de la Recherche du Luxembourg FNR-PRIDE scheme [PRIDE/11012546/NEXTIMMUNE]

向作者/读者索取更多资源

TERT promoter mutations, especially the -124C>T mutation, play a crucial role in the reactivation of telomerase reverse transcriptase. The mutations generally lead to increased TERT transcription levels, with the double mutation showing the highest impact. Additionally, the presence of these mutations may unleash antisense transcription and lncRNA TAPAS might help balance the effects of TERT promoter mutations.
Background: Chief among mechanisms of telomerase reverse transcriptase (TERT) reactivation is the appearance of mutations in the TERT promoter. The two main TERT promoter mutations are C>T transitions located -146C>T and -124C>T upstream from the translational start site. They generate a novel Ets/TCF binding site. Both mutations are mutually exclusive and -124C>T is strikingly overrepresented in most cancers. We investigated whether this mutational bias and mutual exclusion could be due to transcriptional constraints. Methods: We compared sense and antisense transcription of a panel of TERT promoter-luciferase vectors harboring the -124C>T and -146C>T mutations alone or together. lncRNA TAPAS levels were measured by RT-PCR. Results: Both mutations generally increased TERT transcription by 2-4-fold regardless of upstream and downstream regulatory elements. The double mutant increased transcription in an additive fashion, arguing against a direct transcriptional constraint. The -146C>T mutation, alone or in combination with -124C>T, also unleashed antisense transcription. In line with this finding, lncRNA TAPAS was higher in cells with mutated TERT promoter (T98G and U87) than in cells with wild-type promoter, suggesting that lncRNA TAPAS may balance the effect of TERT promoter mutations. Conclusions: -146C>T and -124C>T TERT promoter mutations increase TERT sense and antisense transcription, and the double mutant features higher transcription levels. Increased antisense transcription may contain TERT expression within sustainable levels.

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