ArticleJournal of advanced research2025
The urinary eccDNA landscape in prostate cancer reveals associations with genome instability and vital roles in cancer progression.
Article in Journal of advanced research, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed.
- Extrachromosomal DNA as a platform for epigenetic reprogramming in cancer.Molecular cancer · 2026Review
- Beyond chromosomes: exploring the diverse functions of extrachromosomal circular DNA.Journal of advanced research · 2026Review
- Deciphering the role of cell-free extrachromosomal circular DNA in human heart failure.Human genomics · 2026Article
- The landscape and regulatory potential of eccDNAs in mammalian preimplantation embryos.Nature communications · 2026Article
- A Bioinformatics Workflow to Identify eccDNA Using ECCFP From Long-Read Nanopore Sequencing Data.Bio-protocol · 2026Article
- Extrachromosomal DNA and cancer: function, formation, and clinical implications.Journal of experimental & clinical cancer research : CR · 2026Review
- CircleBase V2: an eccDNA annotation platform across cancers and species.Nucleic acids research · 2026Article
- Extrachromosomal DNA in Solid Tumors-Landscape, Immune Effects, and Resistance to Targeted Therapy.Oncology research · 2026Review
- Identification and Characterization of eccDNA in HepG2 Cells Under DOX-Induced DNA Damage.International journal of molecular sciences · 2025Article
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Authors and funding
9 authors.
Funding
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Abstract
introductionExtrachromosomal circular DNA (eccDNA) plays significant roles in cancer progression and prognosis. However, it remains unclear whether cell-free eccDNA, considered more stable than linear DNA, possesses cancer-specific genomic features. Furthermore, the biogenesis and function of eccDNAs are not yet fully understood.
objectivesThis study aims to characterize the genomic landscape of urinary cell-free eccDNAs in prostate cancer (PCa) and non-cancer (NC) individuals, elucidate their biogenesis and PCa-specific genomic features, and investigate their roles in PCa progression.
methodsWe conducted urine Circle-seq for 21 PCa patients and 16 NC individuals, performed integrated analysis with other omics datasets, and finally validated the function of eccDNA by in vitro transfection and RNA-seq.
resultsWe pioneered the profiling of urinary cell-free eccDNAs landscape in PCa and uncovered a high association between eccDNA generation and active chromatin status as well as gene transcription. Double strand breaks and R-loops, which preferentially occur in active genomic sites and cause genome instability, can promote eccDNA generation. Genome instability frequently results in genomic mutations, and our study further established a link between eccDNA generation and oncogenic mutations. Additionally, genes specifically exhibiting high eccDNA generation frequency (HFGs) in PCa contributed to PCa progression and were associated with poorer survival outcomes in PCa patients. Finally, we demonstrated that eccDNAs derived from PCa-specific HFGs, in contrast to intergenic eccDNAs, could suppress PCa cell proliferation and migration, which was independent of their host gene expression.
conclusionOur study illustrated the biogenesis of eccDNAs from DSBs in active genes, revealed PCa-specific eccDNA features and suggested new mechanisms underlying eccDNA function.
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