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Evaluation of Colorectal Cancer Risk and Prevalence by Stool DNA Integrity Detection
Published on: June 8, 2020
Functional role of small extrachromosomal circular DNA in colorectal cancer
Judith Mary Hariprakash1, Egija Zole1, Weijia Feng1
1Ecology and Evolution, Department of Biology, University of Copenhagen, Copenhagen 2100, Denmark.
Abstract:
Extrachromosomal circular DNA (eccDNA) are molecules that originate from chromosomal DNA but exist independently. While large eccDNA (ecDNA) contributes to tumorigenesis, the role of smaller eccDNA (<100,000 base pairs) in cancer remains unclear. Our analysis of 25 colorectal cancer (CRC) tumors and normal adjacent tissues revealed that eccDNA is significantly more abundant in tumor tissues, correlating strongly with chromosomal amplifications. The presence of whole intact genes on 1.29% of eccDNA was nonrandom. We identified 84 genes that recurred across tumors of multiple patients when present on eccDNA, with 19% of genes being cancer-associated. eccDNA-borne genes were often accompanied by increased expression, and their contribution to expression was much larger than that from linear amplifications and the larger ecDNA. The cytokine gene CXCL5 exemplified this phenomenon, showing substantial copy-number increase and upregulation when present on eccDNA. Functional validation in cell lines showed that CXCL5 eccDNA enhanced transcriptional output and immune cell recruitment function. The recurrence and overexpression of CRC-related genes on eccDNA indicate their selection in tumors, suggest that eccDNA can serve as an additional mechanism for dynamically influencing gene expression and is capable of conferring cancer phenotypes on cells. Analysis of chromatin landscapes revealed that eccDNA preferentially forms at sites of open chromatin and active transcription, with architectural boundaries marked by CTCF protein. Clinically, higher eccDNA levels correlated with poorer relapse-free survival in a small patient cohort. These findings suggest that circular DNA elements across the entire size spectrum participate in cancer evolution and warrant further investigation in larger cohorts.
Insights
Small circular DNA (eccDNA) is more abundant in colorectal cancer (CRC) tumors, driving gene expression and potentially cancer phenotypes. Higher eccDNA levels correlate with poorer survival, suggesting a role in cancer evolution.
Area of Science:
- Genomics
- Cancer Biology
- Molecular Oncology
Background:
- Extrachromosomal circular DNA (eccDNA) are DNA molecules separate from chromosomes.
- While large ecDNA is linked to cancer, the role of smaller eccDNA (<100,000 bp) is unknown.
- Colorectal cancer (CRC) is a significant health concern with complex genetic underpinnings.
Purpose of the Study:
- To investigate the role of small eccDNA in colorectal cancer.
- To determine if eccDNA contributes to tumorigenesis and gene expression.
- To explore the clinical significance of eccDNA in CRC patients.
Main Methods:
- Analysis of eccDNA abundance in 25 CRC tumors and adjacent normal tissues.
- Identification and characterization of genes present on eccDNA.
- Functional validation of eccDNA-borne genes in cell lines.
- Correlation analysis of eccDNA levels with gene expression, chromosomal amplifications, and patient survival.
Main Results:
- eccDNA is significantly more abundant in CRC tumors than normal tissues, correlating with amplifications.
- Recurrent cancer-associated genes were identified on eccDNA, often with increased expression.
- eccDNA-borne genes, like CXCL5, significantly enhanced transcription and cellular functions.
- Higher eccDNA levels were associated with poorer relapse-free survival in patients.
Conclusions:
- Small eccDNA plays a significant role in colorectal cancer evolution by influencing gene expression and conferring cancer phenotypes.
- eccDNA represents an alternative mechanism for dynamic gene regulation in tumors.
- The findings suggest eccDNA is a potential biomarker and therapeutic target in cancer.
- Circular DNA elements across all sizes contribute to cancer development.
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