Polymorphisms within autophagy-related genes as susceptibility biomarkers for pancreatic cancer : A meta-analysis of three large European cohorts and functional characterization

Gálvez-Montosa, Fernando; Peduzzi, Giulia*; Sanchez-Maldonado, José Manuel*; Ter Horst, Rob; Cabrera-Serrano, Antonio J; Gentiluomo, Manuel; Macauda, Angelica; Luque, Natalia; Ünal, Pelin; García-Verdejo, Francisco Javier; Li, Yang; López López, José Antonio; Stein, Angelika; Bueno-de-Mesquita, H Bas; Arcidiacono, Paolo Giorgio; Zanette, Dalila Luciola; Kahlert, Christoph; Perri, Francesco; Soucek, Pavel; Talar-Wojnarowska, Renata; Theodoropoulos, George E; Izbicki, Jakob R; Tamás, Hussein [Hussein, Tamás (Orvostudomány), szerző] Pankreász Betegségek Intézete (SE / AOK / K); Transzlációs Medicina Központ (SE / KSZE); Van Laarhoven, Hanneke; Nappo, Gennaro; Petrone, Maria Chiara; Lovecek, Martin; Vermeulen, Roel C H; Adamonis, Kestutis; Reyes-Zurita, Fernando Jesus; Holleczek, Bernd; Sumskiene, Jolanta; Mohelníková-Duchoňová, Beatrice; Lawlor, Rita T; Pezzilli, Raffaele; Aoki, Mateus Nobrega; Pasquali, Claudio; Petrenkiene, Vitalija; Basso, Daniela; Bunduc, Stefania [Bunduc, Stefania (Gastroenterology), szerző] Pankreász Betegségek Intézete (SE / AOK / K); Transzlációs Medicina Központ (SE / KSZE); Comandatore, Annalisa; Brenner, Hermann; Ermini, Stefano; Vanella, Giuseppe; Goetz, Mara R; Archibugi, Livia; Lucchesi, Maurizio; Uzunoglu, Faik Guntac; Busch, Olivier; Milanetto, Anna Caterina; Puzzono, Marta; Kupcinskas, Juozas; Morelli, Luca; Sperti, Cosimo; Carrara, Silvia; Capurso, Gabriele; van Eijck, Casper H J; Oliverius, Martin; Roth, Susanne; Tavano, Francesca; Kaaks, Rudolf; Szentesi, Andrea [Szentesi, Andrea Ildikó (Pankreatológia), szerző] Transzlációs Medicina Intézet (PTE / ÁOK); Vodickova, Ludmila; Luchini, Claudio; Schöttker, Ben; Landi, Stefano; Dohan, Orsolya [Dohán, Orsolya (endokrinológia), szerző] Pankreász Betegségek Intézete (SE / AOK / K); Tacelli, Matteo; Greenhalf, William; Gazouli, Maria; Neoptolemos, John P; Cavestro, Giulia Martina; Boggi, Ugo; Latiano, Anna; Hegyi, Péter [Hegyi, Péter (Gasztroenterológia), szerző] Pankreász Betegségek Intézete (SE / AOK / K); Transzlációs Medicina Központ (SE / KSZE); Transzlációs Medicina Intézet (PTE / ÁOK); Transzlációs medicina kutatócsoport (PTE / SZKK); Ginocchi, Laura; Netea, Mihai G; Sánchez-Rovira, Pedro; Canzian, Federico; Campa, Daniele**; Sainz, Juan ✉

Angol nyelvű Sokszerzős vagy csoportos szerzőségű szakcikk (Folyóiratcikk) Tudományos
Megjelent: INTERNATIONAL JOURNAL OF CANCER 0020-7136 1097-0215 156 (2) pp. 339-352 2025
  • Szociológiai Tudományos Bizottság: B nemzetközi
  • SJR Scopus - Cancer Research: Q1
Azonosítók
Pancreatic ductal adenocarcinoma (PDAC) is one of the most lethal cancers with patients having unresectable or metastatic disease at diagnosis, with poor prognosis and very short survival. Given that genetic variation within autophagy-related genes influences autophagic flux and susceptibility to solid cancers, we decided to investigate whether 55,583 single nucleotide polymorphisms (SNPs) within 234 autophagy-related genes could influence the risk of developing PDAC in three large independent cohorts of European ancestry including 12,754 PDAC cases and 324,926 controls. The meta-analysis of these populations identified, for the first time, the association of the BIDrs9604789 variant with an increased risk of developing the disease (ORMeta = 1.31, p = 9.67 × 10-6). We also confirmed the association of TP63rs1515496 and TP63rs35389543 variants with PDAC risk (OR = 0.89, p = 6.27 × 10-8 and OR = 1.16, p = 2.74 × 10-5). Although it is known that BID induces autophagy and TP63 promotes cell growth, cell motility and invasion, we also found that carriers of the TP63rs1515496G allele had increased numbers of FOXP3+ Helios+ T regulatory cells and CD45RA+ T regulatory cells (p = 7.67 × 10-4 and p = 1.56 × 10-3), but also decreased levels of CD4+ T regulatory cells (p = 7.86 × 10-4). These results were in agreement with research suggesting that the TP63rs1515496 variant alters binding sites for FOXA1 and CTCF, which are transcription factors involved in modulating specific subsets of regulatory T cells. In conclusion, this study identifies BID as new susceptibility locus for PDAC and confirms previous studies suggesting that the TP63 gene is involved in the development of PDAC. This study also suggests new pathogenic mechanisms of the TP63 locus in PDAC.
Hivatkozás stílusok: IEEEACMAPAChicagoHarvardCSLMásolásNyomtatás
2025-04-03 13:44