Genome-wide purification of extrachromosomal circular DNA from eukaryotic cells

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Standard

Genome-wide purification of extrachromosomal circular DNA from eukaryotic cells. / Møller, Henrik D.; Bojsen, Rasmus Kenneth; Tachibana, Chris; Parsons, Lance; Botstein, David; Regenberg, Birgitte.

In: Journal of Visualized Experiments, No. 110, e54239, 2016.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Møller, HD, Bojsen, RK, Tachibana, C, Parsons, L, Botstein, D & Regenberg, B 2016, 'Genome-wide purification of extrachromosomal circular DNA from eukaryotic cells', Journal of Visualized Experiments, no. 110, e54239. https://doi.org/10.3791/54239

APA

Møller, H. D., Bojsen, R. K., Tachibana, C., Parsons, L., Botstein, D., & Regenberg, B. (2016). Genome-wide purification of extrachromosomal circular DNA from eukaryotic cells. Journal of Visualized Experiments, (110), [e54239]. https://doi.org/10.3791/54239

Vancouver

Møller HD, Bojsen RK, Tachibana C, Parsons L, Botstein D, Regenberg B. Genome-wide purification of extrachromosomal circular DNA from eukaryotic cells. Journal of Visualized Experiments. 2016;(110). e54239. https://doi.org/10.3791/54239

Author

Møller, Henrik D. ; Bojsen, Rasmus Kenneth ; Tachibana, Chris ; Parsons, Lance ; Botstein, David ; Regenberg, Birgitte. / Genome-wide purification of extrachromosomal circular DNA from eukaryotic cells. In: Journal of Visualized Experiments. 2016 ; No. 110.

Bibtex

@article{29c60fd295f44a2680c384c61f874811,
title = "Genome-wide purification of extrachromosomal circular DNA from eukaryotic cells",
abstract = "Extrachromosomal circular DNAs (eccDNAs) are common genetic elements in Saccharomyces cerevisiae and are reported in other eukaryotes as well. EccDNAs contribute to genetic variation among somatic cells in multicellular organisms and to evolution of unicellular eukaryotes. Sensitive methods for detecting eccDNA are needed to clarify how these elements affect genome stability and how environmental and biological factors induce their formation in eukaryotic cells. This video presents a sensitive eccDNA-purification method called Circle-Seq. The method encompasses column purification of circular DNA, removal of remaining linear chromosomal DNA, rolling-circle amplification of eccDNA, deep sequencing, and mapping. Extensive exonuclease treatment was required for sufficient linear chromosomal DNA degradation. The rolling-circle amplification step by φ29 polymerase enriched for circular DNA over linear DNA. Validation of the Circle-Seq method on three S. cerevisiae CEN.PK populations of 10(10) cells detected hundreds of eccDNA profiles in sizes larger than 1 kilobase. Repeated findings of ASP3-1, COS111, CUP1, RSC30, HXT6, HXT7 genes on circular DNA in both S288c and CEN.PK suggests that DNA circularization is conserved between strains at these loci. In sum, the Circle-Seq method has broad applicability for genome-scale screening for eccDNA in eukaryotes as well as for detecting specific eccDNA types.",
author = "M{\o}ller, {Henrik D.} and Bojsen, {Rasmus Kenneth} and Chris Tachibana and Lance Parsons and David Botstein and Birgitte Regenberg",
year = "2016",
doi = "10.3791/54239",
language = "English",
journal = "Journal of Visualized Experiments",
issn = "1940-087X",
publisher = "Journal of Visualized Experiments",
number = "110",

}

RIS

TY - JOUR

T1 - Genome-wide purification of extrachromosomal circular DNA from eukaryotic cells

AU - Møller, Henrik D.

AU - Bojsen, Rasmus Kenneth

AU - Tachibana, Chris

AU - Parsons, Lance

AU - Botstein, David

AU - Regenberg, Birgitte

PY - 2016

Y1 - 2016

N2 - Extrachromosomal circular DNAs (eccDNAs) are common genetic elements in Saccharomyces cerevisiae and are reported in other eukaryotes as well. EccDNAs contribute to genetic variation among somatic cells in multicellular organisms and to evolution of unicellular eukaryotes. Sensitive methods for detecting eccDNA are needed to clarify how these elements affect genome stability and how environmental and biological factors induce their formation in eukaryotic cells. This video presents a sensitive eccDNA-purification method called Circle-Seq. The method encompasses column purification of circular DNA, removal of remaining linear chromosomal DNA, rolling-circle amplification of eccDNA, deep sequencing, and mapping. Extensive exonuclease treatment was required for sufficient linear chromosomal DNA degradation. The rolling-circle amplification step by φ29 polymerase enriched for circular DNA over linear DNA. Validation of the Circle-Seq method on three S. cerevisiae CEN.PK populations of 10(10) cells detected hundreds of eccDNA profiles in sizes larger than 1 kilobase. Repeated findings of ASP3-1, COS111, CUP1, RSC30, HXT6, HXT7 genes on circular DNA in both S288c and CEN.PK suggests that DNA circularization is conserved between strains at these loci. In sum, the Circle-Seq method has broad applicability for genome-scale screening for eccDNA in eukaryotes as well as for detecting specific eccDNA types.

AB - Extrachromosomal circular DNAs (eccDNAs) are common genetic elements in Saccharomyces cerevisiae and are reported in other eukaryotes as well. EccDNAs contribute to genetic variation among somatic cells in multicellular organisms and to evolution of unicellular eukaryotes. Sensitive methods for detecting eccDNA are needed to clarify how these elements affect genome stability and how environmental and biological factors induce their formation in eukaryotic cells. This video presents a sensitive eccDNA-purification method called Circle-Seq. The method encompasses column purification of circular DNA, removal of remaining linear chromosomal DNA, rolling-circle amplification of eccDNA, deep sequencing, and mapping. Extensive exonuclease treatment was required for sufficient linear chromosomal DNA degradation. The rolling-circle amplification step by φ29 polymerase enriched for circular DNA over linear DNA. Validation of the Circle-Seq method on three S. cerevisiae CEN.PK populations of 10(10) cells detected hundreds of eccDNA profiles in sizes larger than 1 kilobase. Repeated findings of ASP3-1, COS111, CUP1, RSC30, HXT6, HXT7 genes on circular DNA in both S288c and CEN.PK suggests that DNA circularization is conserved between strains at these loci. In sum, the Circle-Seq method has broad applicability for genome-scale screening for eccDNA in eukaryotes as well as for detecting specific eccDNA types.

U2 - 10.3791/54239

DO - 10.3791/54239

M3 - Journal article

C2 - 27077531

JO - Journal of Visualized Experiments

JF - Journal of Visualized Experiments

SN - 1940-087X

IS - 110

M1 - e54239

ER -

ID: 162710390