bioRxiv · 10.1101/2025.11.15.688610
Integrative Multi-Omic Profiling of the Human Phosphatome Identifies DUSP15 as a Tumour-Selective Regulator of Immune-Metabolic Reprogramming in Chromophobe Renal Cell Carcinoma
Abstract
Chromophobe renal cell carcinoma (chRCC) lacks robust molecular biomarkers and actionable therapeutic targets. Here, 265 protein-coding phosphatases were systematically interrogated using pan-cancer transcriptomic profiles from The Cancer Genome Atlas, 10 independent Gene Expression Omnibus cohorts, pathway and immune analyses, and two independent single-cell RNA-sequencing datasets. DUSP15 emerged as the most chRCC-selective phosphatase (Tau = 0.977) and distinguished chRCC with high diagnostic accuracy (area under the curve = 0.975; odds ratio = 4.83; P = 6.2 x 10-). Cross-cohort validation further reinforced its marked enrichment in chRCC. Transcriptome-wide analyses defined DUSP15-high tumours by coordinated enrichment of oxidative phosphorylation, MYC target and DNA repair programs, coupled to attenuation of interferon and inflammatory signalling. Immune deconvolution revealed reduced regulatory T-cell and dendritic-cell signatures and lower overall immune content, identifying an immune-depleted tumour state. Crucially, single-cell analyses resolved the cellular source of the bulk-tumour signal, demonstrating broad DUSP15 expression throughout the chRCC tumour epithelium in two independent datasets (72.2-83.7% cellular detection; 144.9-204.3 counts per million), with substantially lower expression in immune, stromal, normal renal-epithelial and non-chRCC tumour compartments. Collectively, these findings identify DUSP15 as a highly selective tumour-epithelial biomarker candidate for chRCC and define a DUSP15-associated immune-metabolic state with potential diagnostic and therapeutic relevance.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Sarhan, A. R.. 2025-11-17. Integrative Multi-Omic Profiling of the Human Phosphatome Identifies DUSP15 as a Tumour-Selective Regulator of Immune-Metabolic Reprogramming in Chromophobe Renal Cell Carcinoma. https://doi.org/10.1101/2025.11.15.688610
Cite the original work for its findings. Save a collection to share your selection of sources.