Genome-wide characterization of extrachromosomal circular DNA in gastric cancer and its potential role in carcinogenesis and cancer progression

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Genome-wide characterization of extrachromosomal circular DNA in gastric cancer and its potential role in carcinogenesis and cancer progression. / Jiang, Xianming; Pan, Xiaoguang; Li, Wenchao; Han, Peng; Yu, Jiaying; Li, Jing; Zhang, Haoran; Lv, Wei; Zhang, Ying; He, Yulong; Xiang, Xi.

In: Cellular and Molecular Life Sciences, Vol. 80, No. 7, 191, 2023.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Jiang, X, Pan, X, Li, W, Han, P, Yu, J, Li, J, Zhang, H, Lv, W, Zhang, Y, He, Y & Xiang, X 2023, 'Genome-wide characterization of extrachromosomal circular DNA in gastric cancer and its potential role in carcinogenesis and cancer progression', Cellular and Molecular Life Sciences, vol. 80, no. 7, 191. https://doi.org/10.1007/s00018-023-04838-0

APA

Jiang, X., Pan, X., Li, W., Han, P., Yu, J., Li, J., Zhang, H., Lv, W., Zhang, Y., He, Y., & Xiang, X. (2023). Genome-wide characterization of extrachromosomal circular DNA in gastric cancer and its potential role in carcinogenesis and cancer progression. Cellular and Molecular Life Sciences, 80(7), [191]. https://doi.org/10.1007/s00018-023-04838-0

Vancouver

Jiang X, Pan X, Li W, Han P, Yu J, Li J et al. Genome-wide characterization of extrachromosomal circular DNA in gastric cancer and its potential role in carcinogenesis and cancer progression. Cellular and Molecular Life Sciences. 2023;80(7). 191. https://doi.org/10.1007/s00018-023-04838-0

Author

Jiang, Xianming ; Pan, Xiaoguang ; Li, Wenchao ; Han, Peng ; Yu, Jiaying ; Li, Jing ; Zhang, Haoran ; Lv, Wei ; Zhang, Ying ; He, Yulong ; Xiang, Xi. / Genome-wide characterization of extrachromosomal circular DNA in gastric cancer and its potential role in carcinogenesis and cancer progression. In: Cellular and Molecular Life Sciences. 2023 ; Vol. 80, No. 7.

Bibtex

@article{575025e0ef124058a45faeadefb04b42,
title = "Genome-wide characterization of extrachromosomal circular DNA in gastric cancer and its potential role in carcinogenesis and cancer progression",
abstract = "Extrachromosomal circular DNAs (eccDNAs) carrying random genomic segments are broadly found across different cancer types, but their molecular functions and impact in gastric cancer (GC) are rarely known. In this study, we aimed to investigate the potential role of eccDNA in GC. Using the Circle-seq strategy, we observed the eccDNA abundance in gastric cancer tissues (GCT) was aberrantly higher than that of normal adjacent tissues (NAT). The high abundance of eccDNAs carrying oncogene-segments in GCT may represent the DNA damage products of amplified oncogenes. Analysis of GCT over-represented eccDNA carrying enhancer (eccEnhancer) based on data from FANTOM5 project combined with TCGA database suggested the GC over-represented eccEnhancers may contribute to development of GC. GC over-represented eccDNAs carrying pre-miRNA (eccMIR) were enriched to multiple cancer-relevant signal pathways by KEGG analysis. We then synthesized the top six GC over-represented eccMIRs and found four of them enabled high expression of miRNAs and down-regulation of miRNA-target genes in MGC803 cells. Furthermore, we observed the inheritance of GC over-represented eccMIRs benefited host cell proliferation and promoted the aggressive features of host cells. Altogether, this study revealed the GC over-represented eccDNAs carrying functional genomic segments were related to the carcinogenesis of GC and presented the capability to facilitate cancer progression, suggesting the cancerous eccDNAs may serve as a dynamic reservoir for genome plasticity and rapid adaptive evolution of cancer. Therefore, blocking the pathways for eccDNAs generation may provide a novel therapeutic strategy for the treatment of gastric cancer.",
author = "Xianming Jiang and Xiaoguang Pan and Wenchao Li and Peng Han and Jiaying Yu and Jing Li and Haoran Zhang and Wei Lv and Ying Zhang and Yulong He and Xi Xiang",
year = "2023",
doi = "10.1007/s00018-023-04838-0",
language = "English",
volume = "80",
journal = "Cellular and Molecular Life Sciences",
issn = "1420-682X",
publisher = "Birkhauser Verlag Basel",
number = "7",

}

RIS

TY - JOUR

T1 - Genome-wide characterization of extrachromosomal circular DNA in gastric cancer and its potential role in carcinogenesis and cancer progression

AU - Jiang, Xianming

AU - Pan, Xiaoguang

AU - Li, Wenchao

AU - Han, Peng

AU - Yu, Jiaying

AU - Li, Jing

AU - Zhang, Haoran

AU - Lv, Wei

AU - Zhang, Ying

AU - He, Yulong

AU - Xiang, Xi

PY - 2023

Y1 - 2023

N2 - Extrachromosomal circular DNAs (eccDNAs) carrying random genomic segments are broadly found across different cancer types, but their molecular functions and impact in gastric cancer (GC) are rarely known. In this study, we aimed to investigate the potential role of eccDNA in GC. Using the Circle-seq strategy, we observed the eccDNA abundance in gastric cancer tissues (GCT) was aberrantly higher than that of normal adjacent tissues (NAT). The high abundance of eccDNAs carrying oncogene-segments in GCT may represent the DNA damage products of amplified oncogenes. Analysis of GCT over-represented eccDNA carrying enhancer (eccEnhancer) based on data from FANTOM5 project combined with TCGA database suggested the GC over-represented eccEnhancers may contribute to development of GC. GC over-represented eccDNAs carrying pre-miRNA (eccMIR) were enriched to multiple cancer-relevant signal pathways by KEGG analysis. We then synthesized the top six GC over-represented eccMIRs and found four of them enabled high expression of miRNAs and down-regulation of miRNA-target genes in MGC803 cells. Furthermore, we observed the inheritance of GC over-represented eccMIRs benefited host cell proliferation and promoted the aggressive features of host cells. Altogether, this study revealed the GC over-represented eccDNAs carrying functional genomic segments were related to the carcinogenesis of GC and presented the capability to facilitate cancer progression, suggesting the cancerous eccDNAs may serve as a dynamic reservoir for genome plasticity and rapid adaptive evolution of cancer. Therefore, blocking the pathways for eccDNAs generation may provide a novel therapeutic strategy for the treatment of gastric cancer.

AB - Extrachromosomal circular DNAs (eccDNAs) carrying random genomic segments are broadly found across different cancer types, but their molecular functions and impact in gastric cancer (GC) are rarely known. In this study, we aimed to investigate the potential role of eccDNA in GC. Using the Circle-seq strategy, we observed the eccDNA abundance in gastric cancer tissues (GCT) was aberrantly higher than that of normal adjacent tissues (NAT). The high abundance of eccDNAs carrying oncogene-segments in GCT may represent the DNA damage products of amplified oncogenes. Analysis of GCT over-represented eccDNA carrying enhancer (eccEnhancer) based on data from FANTOM5 project combined with TCGA database suggested the GC over-represented eccEnhancers may contribute to development of GC. GC over-represented eccDNAs carrying pre-miRNA (eccMIR) were enriched to multiple cancer-relevant signal pathways by KEGG analysis. We then synthesized the top six GC over-represented eccMIRs and found four of them enabled high expression of miRNAs and down-regulation of miRNA-target genes in MGC803 cells. Furthermore, we observed the inheritance of GC over-represented eccMIRs benefited host cell proliferation and promoted the aggressive features of host cells. Altogether, this study revealed the GC over-represented eccDNAs carrying functional genomic segments were related to the carcinogenesis of GC and presented the capability to facilitate cancer progression, suggesting the cancerous eccDNAs may serve as a dynamic reservoir for genome plasticity and rapid adaptive evolution of cancer. Therefore, blocking the pathways for eccDNAs generation may provide a novel therapeutic strategy for the treatment of gastric cancer.

U2 - 10.1007/s00018-023-04838-0

DO - 10.1007/s00018-023-04838-0

M3 - Journal article

C2 - 37369919

VL - 80

JO - Cellular and Molecular Life Sciences

JF - Cellular and Molecular Life Sciences

SN - 1420-682X

IS - 7

M1 - 191

ER -

ID: 359246449