Single-cell and bulk RNA sequencing demonstrate the critical function of the regulatory T cell-associated gene SIRPG in the prognosis and tumor microenvironment of esophageal squamous cell carcinoma

Immunosuppression by regulatory T cells (Tregs) significantly contributes to poor prognosis of esophageal squamous cell carcinoma (ESCC), although the specific regulatory genes and mechanisms involved are not well understood. We analyzed single-cell RNA sequencing and bulk transcriptomic data from TCGA and GEO for ESCC, screening key Treg-associated genes through WGCNA, differential expression analysis, and immune infiltration analysis. Gene functions were validated through in vitro experiments (siRNA knockdown, CCK-8 assay, Transwell assay, 3D tumor spheroid model). SIRPG was identified as a key gene specifically overexpressed in Tregs of ESCC. It was strongly associated with a bad outcome for individuals with ESCC and was highly expressed in several cohorts. SIRPG overexpression modified the immune microenvironment by enhancing Treg infiltration, increasing immune checkpoint molecules (PD-1, CTLA-4, PD-L1), and enriching pathways such as T cell receptor, IL-17, and PI3K-Akt. Functional experiments demonstrated that reducing SIRPG expression markedly inhibited the proliferation, migration, and invasion of ESCC cells. SIRPG was a key Treg-associated oncogene in ESCC that promotes tumor progression by regulating the immune microenvironment and multiple signaling pathways, which exhibited great clinical potential for ESCC patients.

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Publication Details

Journal
Clinical and Experimental Medicine
Published
2026-10-07
DOI
https://doi.org/10.1007/s10238-026-02328-8
Primary Topic
Cancer Immunotherapy and Biomarkers
Type
article
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article

Single-cell and bulk RNA sequencing demonstrate the critical function of the regulatory T cell-associated gene SIRPG in the prognosis and tumor microenvironment of esophageal squamous cell carcinoma

Yuqi Cao, Wenchao Xia, Yuhang Jiang, Feng Chen et al.
Clinical and Experimental Medicine
Cancer Immunotherapy and Biomarkers
article

Single-cell and bulk RNA sequencing demonstrate the critical function of the regulatory T cell-associated gene SIRPG in the prognosis and tumor microenvironment of esophageal squamous cell carcinoma

Yuqi Cao, Wenchao Xia, Yuhang Jiang, Feng Chen, Yijun Xu
article en

Abstract

Immunosuppression by regulatory T cells (Tregs) significantly contributes to poor prognosis of esophageal squamous cell carcinoma (ESCC), although the specific regulatory genes and mechanisms involved are not well understood. We analyzed single-cell RNA sequencing and bulk transcriptomic data from TCGA and GEO for ESCC, screening key Treg-associated genes through WGCNA, differential expression analysis, and immune infiltration analysis. Gene functions were validated through in vitro experiments (siRNA knockdown, CCK-8 assay, Transwell assay, 3D tumor spheroid model). SIRPG was identified as a key gene specifically overexpressed in Tregs of ESCC. It was strongly associated with a bad outcome for individuals with ESCC and was highly expressed in several cohorts. SIRPG overexpression modified the immune microenvironment by enhancing Treg infiltration, increasing immune checkpoint molecules (PD-1, CTLA-4, PD-L1), and enriching pathways such as T cell receptor, IL-17, and PI3K-Akt. Functional experiments demonstrated that reducing SIRPG expression markedly inhibited the proliferation, migration, and invasion of ESCC cells. SIRPG was a key Treg-associated oncogene in ESCC that promotes tumor progression by regulating the immune microenvironment and multiple signaling pathways, which exhibited great clinical potential for ESCC patients.

Clinical and Experimental Medicine
Tianjin Chest Hospital (CN)
Good health and well-being
Openalex Percentile: Top 16%
Cancer Immunotherapy and Biomarkers
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Single-cell and bulk RNA sequencing demonstrate the critical function of the regulatory T cell-associated gene SIRPG in the prognosis and tumor microenvironment of esophageal squamous cell carcinoma — Yuqi Cao, Wenchao Xia, et al. · Clinical and Experimental Medicine (2026) | TGRS Research Map | TGRS