Author:
Vogiatzi Fotini,Brandt Dominique T.,Schneikert Jean,Fuchs Jeannette,Grikscheit Katharina,Wanzel Michael,Pavlakis Evangelos,Charles Joël P.,Timofeev Oleg,Nist Andrea,Mernberger Marco,Kantelhardt Eva J.,Siebolts Udo,Bartel Frank,Jacob Ralf,Rath Ariane,Moll Roland,Grosse Robert,Stiewe Thorsten
Abstract
Mutations in the p53 tumor suppressor gene are the most frequent genetic alteration in cancer and are often associated with progression from benign to invasive stages with metastatic potential. Mutations inactivate tumor suppression by p53, and some endow the protein with novel gain of function (GOF) properties that actively promote tumor progression and metastasis. By comparative gene expression profiling of p53-mutated and p53-depleted cancer cells, we identified ectonucleoside triphosphate diphosphohydrolase 5 (ENTPD5) as a mutant p53 target gene, which functions as a uridine 5′-diphosphatase (UDPase) in the endoplasmic reticulum (ER) to promote the folding of N-glycosylated membrane proteins. A comprehensive pan-cancer analysis revealed a highly significant correlation between p53 GOF mutations and ENTPD5 expression. Mechanistically, mutp53 is recruited by Sp1 to the ENTPD5 core promoter to induce its expression. We show ENTPD5 to be a mediator of mutant p53 GOF activity in clonogenic growth, architectural tissue remodeling, migration, invasion, and lung colonization in an experimental metastasis mouse model. Our study reveals folding of N-glycosylated membrane proteins in the ER as a mechanism underlying the metastatic progression of tumors with mutp53 that could provide new possibilities for cancer treatment.
Funder
Deutsche Forschungsgemeinschaft
EC | European Research Council
Bundesministerium für Bildung und Forschung
Deutsche José Carreras Leukämie Stiftung
Deutsche Krebshilfe
Von-Behring Röntgen-Stiftung
Rhön Klinikum AG
Universitätsklinikum Gießen und Marburg
Publisher
Proceedings of the National Academy of Sciences
Cited by
73 articles.
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