ArticleProtein and peptide letters2025
ZNF165: A Pan-Cancer Biomarker with Prognostic and Therapeutic Potential.
Article in Protein and peptide letters, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 22 papers.
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Who cites it
22 citing papers in PubMed.
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- Constructing a prognostic survival model for patients with stage II-IV epithelial ovarian cancer: a study based on the SEER database and external validation in China.Scientific reports · 2026Article
- Comprehensive analysis of metabolic reprogramming-related gene signatures for predicting ovarian cancer prognosis, the immune landscape, and potential treatment options.Discover oncology · 2026Article
- SLC39A6 as a pan-cancer promising biomarker and actionable therapeutic target for CH5132799 sensitivity.BMC cancer · 2026Article
- ADGRF4 and ADGRL4 as novel prognostic biomarkers and potential therapeutic implications in stomach adenocarcinoma.BMC gastroenterology · 2026Article
- miR-325 serves as a prognostic biomarker and regulates tumor progression by targeting ARRDC3 in ovarian cancer.Discover oncology · 2026Article
- From Yin-deficiency to therapy: molecular mechanisms and drug discovery in high-grade serous ovarian cancer.Journal of ovarian research · 2026Article
- Integrated bioinformatic analysis and experiments reveal EFEMP1 as a novel aging-related signature gene in calcific aortic valve disease.Scientific reports · 2026Article
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- ALKBH5 promotes ovarian cancer progression by activating Notch2 signaling.Biological procedures online · 2026Article
- Phosphoenolpyruvate carboxykinase 2 as a prognostic biomarker: expression and clinical significance in Group 3 and Group 4 medulloblastoma.Journal of neuro-oncology · 2026Article
- Pan-cancer multi-omics dissection of podosome-related genes reveals their dual roles in tumor invasion and immune modulation.Discover oncology · 2026Article
- SOX30 is a diagnostic biomarker that suppresses ovarian cancer progression through an autophagy mediated mechanism.Discover oncology · 2026Article
- Identification of MTMR2 as an AML-associated candidate biomarker derived from lipid metabolism-related transcriptomic analysis.Frontiers in oncology · 2026Article
- Engineering immune-competent niches: strategies, applications, and translational hurdles in ovarian cancer organoid models.Frontiers in immunology · 2026Review
- Integrated single-cell and bulk transcriptomic analyses reveal cDC1-centered ubiquitination dysregulation and identify UBE2F as a critical regulator in sepsis.Frontiers in immunology · 2026Article
- Single-cell sequencing combined with transcriptome analysis unravels LUMFrontiers in immunology · 2026Article
- Pan-cancer analysis of DTX3L as a potential prognostic and immunological biomarker.Scientific reports · 2025Article
- E2F transcription factors as multimodal biomarkers for pan-cancer management.Scientific reports · 2025Article
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2 authors.
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Abstract
backgroundThe role of ZNF165 in only a few tumors has been reported. ZNF165 plays an important role in liver cancer, gastric cancer, and breast cancer, especially in regulating the immune microenvironment, promoting tumor cell proliferation and migration, and serving as a potential target for immunotherapy.
objectiveThis study aimed to enhance an understanding of how the ZNF165 gene functions and influences cancer development.
methodsUsing a suite of online resources, including TIMER, TCGA, GTEx, GEPIA2, cBioPortal, TIMER2, STRING, DAVID, RNAactDrug, CancerSEA, and UCSC, along with comprehensive statistical analyses, we conducted a thorough investigation of the pan-cancer landscape of ZNF165. This study encompassed an assessment of ZNF165 levels, their associations with patient outcomes, and clinical correlates. We examined the interplay between ZNF165 and key cancer biomarkers, such as Microsatellite Instability (MSI), Tumor Mutational Burden (TMB), immune cell infiltration, and the expression of immune checkpoint genes. We delved into the genetic variations of ZNF165, its biological roles across various cancer types, and its potential links to drug responsiveness. We analyzed single-cell expression patterns of ZNF165 and their implications for the functional dynamics of cancer. We employed quantitative Reverse Transcription PCR (qRT-PCR) to measure ZNF165 levels in Ovarian Cancer (OC) cell lines.
resultsZNF165 expression displayed aberrations across a diverse range of human cancers and exhibited correlations with clinical stages. High ZNF165 expression in KIRC, KIRP, STAD, and UCEC was significantly associated with poor overall survival. ZNF165 has encouraging diagnostic value in specific tumor types, with gene amplification identified as the predominant genetic alteration. Our analysis further uncovered significant associations between ZNF165 levels and MSI across three distinct cancer types, as well as with TMB in six different malignancies. We detected substantial correlations between ZNF165 levels and immune cell infiltration, as well as the expression of immune checkpoint genes. ZNF165 was found to be involved in several prevalent signaling pathways across various cancer types. ZNF165 may potentially contribute to chemotherapy and chemoresistance, and was observed to be involved in cancer progression. A ceRNA regulatory network involving AFDN-DT, miR-191-5p, and ZNF165 was constructed for OC, revealing significantly elevated ZNF165 levels in OC cell lines. Dysregulated ZNF165 expression across a spectrum of malignancies might play a role in cancer initiation and advancement via multiple biological pathways.
conclusionZNF165 may serve as a promising therapeutic target for the treatment of cancer in human patients.
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