Evidence mapPaperPMID 41252049Full record

ArticleDiscover oncology2025

Utilizing a novel mitochondrial-related gene signature for predicting the prognosis and immunological impact in bladder cancer.

Gongping Wu, Chengwei Fan, Xueming Ma, Dongnuan Yao, Weitao Yu, Junqiang Tian

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Article in Discover oncology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 2 papers.

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2citing papers in PubMed
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1 · What the graph read from it

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3 · Its place in the literature

Who cites it

2 citing papers in PubMed.

  1. Article
  2. [Research Progress on the Role and Mechanisms of PYCR1 
in Tumorigenesis and Progression].Zhongguo fei ai za zhi = Chinese journal of lung cancer · 2026
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5 · Who and what money

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6 authors.

Gongping Wu *Department of Urology, The Second Hospital of Lanzhou University, No. 82 Cuiyingmen, Lanzhou, 730030, China.
Chengwei Fan *Department of Urology, The Second Hospital of Lanzhou University, No. 82 Cuiyingmen, Lanzhou, 730030, China.
Xueming MaDepartment of Urology, The Second Hospital of Lanzhou University, No. 82 Cuiyingmen, Lanzhou, 730030, China.
Dongnuan YaoDepartment of Urology, The Second Hospital of Lanzhou University, No. 82 Cuiyingmen, Lanzhou, 730030, China.
Weitao YuDepartment of Urology, The Second Hospital of Lanzhou University, No. 82 Cuiyingmen, Lanzhou, 730030, China.
Junqiang TianDepartment of Urology, The Second Hospital of Lanzhou University, No. 82 Cuiyingmen, Lanzhou, 730030, China. ery_tianjq@lzu.edu.cn.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

backgroundMounting evidence highlights the critical role of mitochondrial dysfunction, driven by mitochondrial-related genes (MTRGs), in the development, progression, and therapeutic response of cancer. However, a comprehensive analysis linking specific Mitochondria-Related Gene Signature (MTRGS) to Bladder Cancer (BLCA) prognosis and immunotherapy efficacy remains largely unexplored. Therefore, this study aims to investigate the role of MTRGs in BLCA, construct and validate a novel MTRGs-based prognostic signature, and explore its potential for guiding personalized treatment strategies. MATERIALS AND

methodsLeveraging transcriptomic and clinical data from The Cancer Genome Atlas (TCGA-BLCA) cohort, we constructed a mitochondrial-related risk score model using LASSO, univariate and multivariate Cox regression analyses. This model was subsequently validated in an independent Gene Expression Omnibus (GEO) dataset. We then employed integrated bioinformatics approaches (implemented in R with online databases) to characterize features of the tumor microenvironment (TME), immune cell infiltration, Gene Set Enrichment Analysis (GSEA), tumor mutational burden (TMB), and drug sensitivity across different risk groups. Additionally, using data from public databases, we further verified our findings through single-cell RNA sequencing (scRNA-seq) analyses.

resultsUsing 104 mitochondria-related differentially expressed genes (MTR-DEGs), unsupervised non-negative matrix factorization (NMF) clustering stratified BLCA patients into three molecular subtypes (Clusters 1-3). Survival analysis revealed that patients in Cluster 3 had significantly longer overall survival than those in Clusters 1 and 2. Our mitochondrial-related risk model incorporating six core genes (MAP1B, PYCR1, HSD3B1, KLK6, AKR1B15, and TAT) - exhibited robust prognostic capability (3-years AUC = 0.695 in TCGA-BLCA, 0.798 in GEO-GSE32894, 0.703 in GSE13507). The risk model revealed distinct immune infiltration patterns between high- and low-risk groups. Furthermore, Tumor Immune Dysfunction and Exclusion (TIDE) and immunophenotype score (IPS) analyses demonstrated that integrating risk scores with stromal/immune signatures significantly enhanced immunotherapy benefit prediction across BLCA risk-subgroups. Crucially, the model demonstrated predictive power for therapy response: low-risk patients showed potential benefit from immune checkpoint inhibitors, while high-risk patients exhibited heightened sensitivity to specific chemotherapy agents or targeted therapies (e.g., Tozasertib, Gemcitabine) and may require intensified regimens.

conclusionThis validated mitochondrial risk model delivers a clinically actionable biomarker for BLCA prognosis stratification and guides personalized therapeutic selection, enabling precision treatment intensification.

Indexed as

Immune cells infiltrationImmunotherapyMitochondria-related differentially expressed genes (MTR-DEGs)Prognostic model

Identifiers

PMID41252049
PMCPMC12627312

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