Dual pathway regulation of castration response and ferroptosis in the prostate epithelium
Li, W.; Zhou, J.-B.; Wang, Z.; Zandkarimi, F.; Milner, T. A.; Xuan, S.; Christin, J. R.; Laplaca, C. J.; Greenberg, A. S.; Chute, J. P.; Hibshoosh, H.; Stockwell, B. R.; Shen, M. M.
Show abstract
Understanding how sex hormones maintain tissue integrity--and how their disruption can promote cancer--is a central question in biology. In the prostate, androgen signaling is crucial for development, homeostasis, and cancer, yet the molecular mechanisms underlying tissue regression after androgen-deprivation have remained unknown. Here we show that castration induces epithelial regression via ferroptosis in the normal mouse and human prostate, as well as in prostate tumors. Using in vivo analyses in genetically-engineered mice, supported by validation in human organotypic cultures, we demonstrate that androgen receptor (AR) signaling controls castration response through two distinct pathways: an intrinsic luminal epithelial pathway regulated by the prostate-specific transcription factor NKX3.1, and an extrinsic stromal signal mediated by the secreted factor pleiotrophin (PTN). Together, these AR signaling pathways coordinately regulate biosynthesis of monounsaturated fatty acid (MUFA) phospholipids and GPX4 expression to suppress prostate epithelial ferroptosis. Our findings reveal a sex hormone-regulated ferroptotic program that governs tissue homeostasis and suggest that ferroptosis induction could represent a new therapeutic strategy for prostate cancer.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Identification and characterization of BEND2 as a novel and key regulator of meiosis during mouse spermatogenesis 94%
- A dynamic gene regulatory code drives synaptic development of hippocampal granule cells 94%
- Selective disruption of lipid peroxide homeostasis in intratumoral regulatory T cells by targeting FSP1 enhances cancer immunity 94%
Similar papers in this journal
- Cellular cartography reveals mouse prostate organization and determinants of castration resistance 97%
- PGC-1a drives small cell neuroendocrine cancer progression towards an ASCL1-expressing subtype with increased mitochondrial capacity 94%
- Essential roles of the ANKRD31-REC114 interaction in meiotic recombination and mouse spermatogenesis 94%
Similar papers in this journal
- Defining cellular population dynamics at single cell resolution during prostate cancer progression 96%
- DECR1 is an androgen-repressed survival factor that regulates PUFA oxidation to protect prostate tumor cells from ferroptosis 96%
- A feedback loop between the androgen receptor and 6-phosphogluoconate dehydrogenase (6PGD) drives prostate cancer growth 95%
Similar papers in this journal
- Convergent alterations in the tumor microenvironment of MYC-driven human and murine prostate cancer 96%
- Dual Functions of SPOP and ERG Dictate Androgen Therapy Responses in Prostate Cancer 95%
- MYC drives aggressive prostate cancer by disrupting transcriptional pause release at androgen receptor targets 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.