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Genetic regulation of TERT splicing affects cancer risk by altering cellular longevity and replicative potential

Nature Communications. 2025-02; 
Oscar Florez-Vargas, Michelle Ho, Maxwell H Hogshead, Brenen W Papenberg, Chia-Han Lee, Kaitlin Forsythe, Kristine Jones, Wen Luo, Kedest Teshome, Cornelis Blauwendraat, Kimberly J Billingsley, Mikhail Kolmogorov, Melissa Meredith, Benedict Paten, Raj Chari, Chi Zhang, John S Schneekloth, Mitchell J Machiela, Stephen J Chanock, Shahinaz M Gadalla, Sharon A Savage, Sam M Mbulaiteye, Ludmila Prokunina-Olsson National Cancer Institute
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Custom Vector Construction The pCMV-TERT-FL-HA expression construct was generated with high-fidelity Q5 polymerase (NEB) and amplified from a TERT-FL plasmid (GenScript OHu25394), using a forward primer with an AgeI recognition site and a reverse primer with an HA-tag and BsrGI recognition sites (Supplementary Data 19). Get A Quote

摘要

The chromosome 5p15.33 region, which encodes telomerase reverse transcriptase (TERT), harbors multiple germline variants identified by genome-wide association studies (GWAS) as risk for some cancers but protective for others. Here, we characterize a variable number tandem repeat within TERT intron 6, VNTR6-1 (38-bp repeat unit), and detect a strong link between VNTR6-1 alleles (Short: 24-27 repeats, Long: 40.5-66.5 repeats) and GWAS signals rs2242652 and rs10069690 within TERT intron 4. Bioinformatics analyses reveal that rs10069690-T allele increases intron 4 retention while VNTR6-1-Long allele expands a polymorphic G-quadruplex (G4, 35-113 copies) within intron 6, with both variants contributing to variable T... More

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