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Updated: Feb 22, 2026

Predictive Immune Modeling of Solid Tumors
Published on: February 25, 2020
SLFN5 as a dual-function oncogene and immune regulator: A pan-cancer multi-omics analysis linking prognosis, immune
Fubiao Kang1, Ziye Yang2, Dong Li1
1Department of Hepatology, Bethune International Peace Hospital, NO.398, Zhongshan Road West, Shijiazhuang, 050082, People's Republic of China.
Abstract:
This study delineates the dual oncogenic and immunomodulatory functions of SLFN5 across a spectrum of human malignancies. By integrating comprehensive multi-omics analyses in breast, liver, and ovarian cancers, we demonstrate that elevated SLFN5 expression is consistently associated with advanced tumor stage, remodeling of the tumor microenvironment toward a more aggressive phenotype, and poorer clinical outcomes. Mechanistically, SLFN5 displays a paradoxical immunoregulatory role: it facilitates the infiltration of immunosuppressive regulatory T cells (Tregs) and polarized macrophages, yet concurrently stimulates key immune checkpoint pathways. Functional enrichment analyses further underscore its central position in coordinating tumor-immune communication. Clinically, SLFN5 expression emerges as a predictive biomarker for heightened sensitivity to epigenetic therapies, including BET and HDAC inhibitors, and shows correlation with established markers of genomic instability, such as elevated tumor mutational burden (TMB) and microsatellite instability (MSI). Collectively, our results establish SLFN5 as a pleiotropic regulator residing at the crossroads of tumor progression and immune evasion. These findings not only provide a molecular rationale for targeting SLFN5 therapeutically but also offer a conceptual framework for designing combination immunotherapy strategies in SLFN5-high malignancies.
Insights
The study reveals SLFN5
Area of Science:
- Oncology
- Immunology
- Cancer Biology
Background:
- SLFN5's role in human cancers is not fully understood.
- Investigating SLFN5's dual functions in tumor progression and immune response is crucial.
Purpose of the Study:
- To elucidate the oncogenic and immunomodulatory functions of SLFN5 in breast, liver, and ovarian cancers.
- To explore SLFN5's association with tumor aggressiveness, clinical outcomes, and immune microenvironment.
- To evaluate SLFN5 as a predictive biomarker for epigenetic therapies and genomic instability.
Main Methods:
- Comprehensive multi-omics analyses.
- Functional enrichment analyses.
- Correlation analysis with clinical outcomes and biomarkers.
Main Results:
- Elevated SLFN5 expression correlates with advanced tumor stage, aggressive tumor microenvironment, and poor prognosis.
- SLFN5 paradoxically promotes regulatory T cells and macrophages infiltration while upregulating immune checkpoints.
- SLFN5 is a predictive biomarker for epigenetic therapies (BET/HDAC inhibitors) and linked to tumor mutational burden (TMB) and microsatellite instability (MSI).
Conclusions:
- SLFN5 is a key regulator of tumor progression and immune evasion in various cancers.
- Targeting SLFN5 offers therapeutic potential and informs combination immunotherapy strategies for SLFN5-high malignancies.
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