Detalle Publicación

ARTÍCULO

Comprehensive molecular analysis of immortalization hallmarks in thyroid cancer reveals new prognostic markers

Autores: Montero-Conde, C. (Autor de correspondencia); Leandro-García, L. J.; Martínez-Montes, A. M.; Martínez, P.; Moya, F. J.; Leton, R.; Gil, E.; Martínez-Puente, N.; Guadalix, S.; Currás Freixes, María; García Tobar, Laura; Zafon, C.; Jorda, M.; Riesco-Eizaguirre, G.; González-García, P.; Monteagudo, M.; Torres-Pérez, R.; Mancikova, V.; Ruiz-Llorente, S.; Pérez-Martínez, M.; Pita, G.; Galofre Ferrater, Juan Carlos; González-Neira, A.; Cascon, A.; Rodríguez-Antona, C.; Megias, D.; Blasco, M. A.; Caleiras, E.; Rodríguez-Perales, S.; Robledo, M. (Autor de correspondencia)
Título de la revista: CLINICAL AND TRANSLATIONAL MEDICINE
ISSN: 2001-1326
Volumen: 12
Número: 8
Páginas: e1001
Fecha de publicación: 2022
Resumen:
Background: Comprehensive molecular studies on tumours are needed to delineate immortalization process steps and identify sensitive prognostic biomarkers in thyroid cancer. Methods and results: In this study, we extensively characterize telomere-related alterations in a series of 106 thyroid tumours with heterogeneous clinical outcomes. Using a custom-designed RNA-seq panel, we identified five telomerase holoenzyme-complex genes upregulated in clinically aggressive tumours compared to tumours from long-term disease-free patients, being TERT and TERC denoted as independent prognostic markers by multivariate regression model analysis. Characterization of alterations related to TERT re-expression revealed that promoter mutations, methylation and/or copy gains exclusively co-occurred in clinically aggressive tumours. Quantitative-FISH (fluorescence in situ hybridization) analysis of telomere lengths showed a significant shortening in these carcinomas, which matched with a high proliferative rate measured by Ki-67 immunohistochemistry. RNA-seq data analysis indicated that short-telomere tumours exhibit an increased transcriptional activity in the 5-Mb-subtelomeric regions, site of several telomerase-complex genes. Gene upregulation enrichment was significant for specific chromosome-ends such as the 5p, where TERT is located. Co-FISH analysis of 5p-end and TERT loci showed a more relaxed chromatin configuration in short telomere-length tumours compared to normal telomere-length tumours. Conclusions: Overall, our findings support that telomere shortening leads to a 5p subtelomeric region reorganization, facilitating the transcription and accumulation of alterations at TERT-locus.
Impacto: