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A prostate cancer-specific super-enhancer at 1q42.3 regulates the CAPN2 and KRT19.

Sep 2026 · Journal of Biological Chemistry · pp. 113588 · 0 citations · 68 references
Medicine

Abstract

Genetic susceptibility plays an essential role in prostate cancer (PCa) risk, while the functional mechanisms underlying several classic risk loci remain largely uncharacterized. Here, we identified a PCa specific super-enhancer within 1q42.3 locus, termed NR125945-SE, which resides within a previously reported PCa susceptibility region. Through comparative H3K27ac ChIP-seq analysis, we observed that NR125945-SE is highly active in PCa cells compared to normal controls, and this super-enhancer region is also epigenetically activated in human prostate cancer tissues. NR125945-SE contributes to PCa malignant progression. Mechanistically, integrative analysis combining RNA-seq and 4C-seq data revealed that NR125945-SE regulates the expression of CAPN2 which encoding the calpain-2 protease, and KRT19 which encoding keratin 19, through long-range chromatin interactions. Over expression of these candidate downstream targets partially rescued the transcriptional and phenotypic consequences of NR125945 deletion. Furthermore, we demonstrated that NR125945-SE activity is mediated by the cooperative binding of multiple transcription factors, including ZNF460, ETV5, and FOXK1, which physically occupy this super-enhancer. Consistently, elevated expression of CAPN2 and KRT19 was associated with poor biochemical recurrence-free survival and advanced castration-resistant prostate cancer in patient cohorts. In summary, our findings provide insights into a functional epigenetic element within a classic genetic risk locus, proposing a mechanism by which super-enhancer-mediated regulation promotes prostate cancer progression.

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