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Tytuł pozycji:

ECCsplorer: a pipeline to detect extrachromosomal circular DNA (eccDNA) from next-generation sequencing data

Tytuł :
ECCsplorer: a pipeline to detect extrachromosomal circular DNA (eccDNA) from next-generation sequencing data
Autorzy :
Ludwig Mann
Kathrin M. Seibt
Beatrice Weber
Tony Heitkam
Pokaż więcej
Temat :
eccDNA
Extrachromosomal circular DNA
circDNA
circSeq
Mobilome-seq
TE activity
Computer applications to medicine. Medical informatics
R858-859.7
Biology (General)
QH301-705.5
Źródło :
BMC Bioinformatics, Vol 23, Iss 1, Pp 1-15 (2022)
Informacja o wydawcy :
BMC, 2022.
Rok publikacji :
2022
Kolekcja :
LCC:Computer applications to medicine. Medical informatics
LCC:Biology (General)
Typ dokumentu :
article
Opis pliku :
electronic resource
Język :
English
ISSN :
1471-2105
Relacje :
https://doaj.org/toc/1471-2105
DOI :
10.1186/s12859-021-04545-2
Dostęp URL :
https://doaj.org/article/5b294ebd462d4534b94003e9fe1242a9
Numer akcesji :
edsdoj.5b294ebd462d4534b94003e9fe1242a9
Czasopismo naukowe
Abstract Background Extrachromosomal circular DNAs (eccDNAs) are ring-like DNA structures physically separated from the chromosomes with 100 bp to several megabasepairs in size. Apart from carrying tandemly repeated DNA, eccDNAs may also harbor extra copies of genes or recently activated transposable elements. As eccDNAs occur in all eukaryotes investigated so far and likely play roles in stress, cancer, and aging, they have been prime targets in recent research—with their investigation limited by the scarcity of computational tools. Results Here, we present the ECCsplorer, a bioinformatics pipeline to detect eccDNAs in any kind of organism or tissue using next-generation sequencing techniques. Following Illumina-sequencing of amplified circular DNA (circSeq), the ECCsplorer enables an easy and automated discovery of eccDNA candidates. The data analysis encompasses two major procedures: first, read mapping to the reference genome allows the detection of informative read distributions including high coverage, discordant mapping, and split reads. Second, reference-free comparison of read clusters from amplified eccDNA against control sample data reveals specifically enriched DNA circles. Both software parts can be run separately or jointly, depending on the individual aim or data availability. To illustrate the wide applicability of our approach, we analyzed semi-artificial and published circSeq data from the model organisms Homo sapiens and Arabidopsis thaliana, and generated circSeq reads from the non-model crop plant Beta vulgaris. We clearly identified eccDNA candidates from all datasets, with and without reference genomes. The ECCsplorer pipeline specifically detected mitochondrial mini-circles and retrotransposon activation, showcasing the ECCsplorer’s sensitivity and specificity. Conclusion The ECCsplorer (available online at https://github.com/crimBubble/ECCsplorer ) is a bioinformatics pipeline to detect eccDNAs in any kind of organism or tissue using next-generation sequencing data. The derived eccDNA targets are valuable for a wide range of downstream investigations—from analysis of cancer-related eccDNAs over organelle genomics to identification of active transposable elements.
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