BMAL1-HIF2α heterodimers contribute to ccRCC

Author:

Mello Rebecca M.,Gomez Ceballos Diego,Sandate Colby R.,Agudelo Daniel,Jouffe Celine,Uhlenhaut Nina Henriette,Thomä Nicolas H.,Simon M. Celeste,Lamia Katja A.ORCID

Abstract

AbstractCircadian disruption enhances cancer risk, and many tumors exhibit disordered circadian gene expression. We show rhythmic gene expression is unexpectedly robust in clear cell renal cell carcinoma (ccRCC). Furthermore, the clock geneBMAL1is higher in ccRCC than in healthy kidneys, unlike in other tumor types. BMAL1 is closely related to ARNT, and we show that BMAL1-HIF2α regulates a subset of HIF2α target genes in ccRCC cells. Depletion ofBMAL1reprograms HIF2α chromatin association and target gene expression and reduces ccRCC growth in culture and in xenografts. Analysis of pre-existing data reveals higherBMAL1in patient-derived xenografts that are sensitive to growth suppression by a HIF2α antagonist (PT2399). We show that BMAL1-HIF2α is more sensitive than ARNT-HIF2α to suppression by PT2399, and increasingBMAL1sensitizes 786O cells to growth inhibition by PT2399. Together, these findings indicate that an alternate HIF2α heterodimer containing the circadian partner BMAL1 contributes to HIF2α activity, growth, and sensitivity to HIF2α antagonist drugs in ccRCC cells.

Publisher

Cold Spring Harbor Laboratory

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