KDM6A loss enhances oxidative phosphorylation uncovering tissue-level convergent evolution
Abstract
Abstract The tumor suppressor KDM6A / UTX , a histone demethylase and a 2-oxoglutarate-dependent dioxygenase, is frequently lost in many cancer types. We show that KDM6A loss pervasively activates oxidative phosphorylation in several solid tumors, generating a pseudo-hyperoxic environment, opposite from the pseudo-hypoxia observed in VHL-mutated renal carcinomas. Mechanistically, KDM6A sustains the expression of the coil-coil domain gene CCDC3 , which inhibits CREB1-driven transcription of the mitochondrial regulator PPARGC1A. In the hematological cancer multiple myeloma where KDM6A is frequently deleted, its loss similarly promotes oxidative phosphorylation, but via an alternative mechanism: the increased transfer of mitochondria from stromal to myeloma cells via tunneling nanotubes, triggered by the loss of the mTORC1 inhibitor TRAF3IP3 . Beyond cancer, KDM6A regulates oxidative phosphorylation also during development and in adult tissues, engaging either the CCDC3-CREB1 or the TRAF3IP3-mTORC1 pathways. These mutually exclusive associations suggest a tissue-level convergent evolution, positioning KDM6A as a central modulator of mitochondrial activity through context-specific partners.
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Authors: Antonino Alex Cartalemi, Dalia Rosano, Camilla Ferrari, Gemma Crupi, Laura Cassina, Guido Gatti, Federica Corigliano, Simona Punzi, ILARIA VILLANTI, Daphné Dupéré-Richer, Chiara D’Ercole, Veronica Ruggieri, Annarita Miluzio, Tiziana Bruno, José Manuel García-Manteiga, Valentina Giansanti, Richard L. Bennett, Davide Cittaro, Luca Madaro, Alessandra Boletta, Telmo Pievani, Stefano Biffo, Maurizio Fanciulli, Michele Ciboddo, Jonathan Licht, Giovanni Tonon
Institutions: University of Padua, Istituti di Ricovero e Cura a Carattere Scientifico, National Cancer Institute, Sapienza University of Rome, University of Milan, Vita-Salute San Raffaele University, Istituto di Ricovero e Cura a Carattere Scientifico San Raffaele, University of Rome Tor Vergata, Istituto Nazionale Genetica Molecolare, Van Andel Institute, National Cancer Research Institute