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Targeted profiling of human extrachromosomal DNA by CRISPR-CATCH.

Authors :
Hung, King L
Hung, King L
Luebeck, Jens
Dehkordi, Siavash R
Colón, Caterina I
Li, Rui
Wong, Ivy Tsz-Lo
Coruh, Ceyda
Dharanipragada, Prashanthi
Lomeli, Shirley H
Weiser, Natasha E
Moriceau, Gatien
Zhang, Xiao
Bailey, Chris
Houlahan, Kathleen E
Yang, Wenting
González, Rocío Chamorro
Swanton, Charles
Curtis, Christina
Jamal-Hanjani, Mariam
Henssen, Anton G
Law, Julie A
Greenleaf, William J
Lo, Roger S
Mischel, Paul S
Bafna, Vineet
Chang, Howard Y
Hung, King L
Hung, King L
Luebeck, Jens
Dehkordi, Siavash R
Colón, Caterina I
Li, Rui
Wong, Ivy Tsz-Lo
Coruh, Ceyda
Dharanipragada, Prashanthi
Lomeli, Shirley H
Weiser, Natasha E
Moriceau, Gatien
Zhang, Xiao
Bailey, Chris
Houlahan, Kathleen E
Yang, Wenting
González, Rocío Chamorro
Swanton, Charles
Curtis, Christina
Jamal-Hanjani, Mariam
Henssen, Anton G
Law, Julie A
Greenleaf, William J
Lo, Roger S
Mischel, Paul S
Bafna, Vineet
Chang, Howard Y
Source :
Nature genetics; vol 54, iss 11, 1746-1754; 1061-4036
Publication Year :
2022

Abstract

Extrachromosomal DNA (ecDNA) is a common mode of oncogene amplification but is challenging to analyze. Here, we adapt CRISPR-CATCH, in vitro CRISPR-Cas9 treatment and pulsed field gel electrophoresis of agarose-entrapped genomic DNA, previously developed for bacterial chromosome segments, to isolate megabase-sized human ecDNAs. We demonstrate strong enrichment of ecDNA molecules containing EGFR, FGFR2 and MYC from human cancer cells and NRAS ecDNA from human metastatic melanoma with acquired therapeutic resistance. Targeted enrichment of ecDNA versus chromosomal DNA enabled phasing of genetic variants, identified the presence of an EGFRvIII mutation exclusively on ecDNAs and supported an excision model of ecDNA genesis in a glioblastoma model. CRISPR-CATCH followed by nanopore sequencing enabled single-molecule ecDNA methylation profiling and revealed hypomethylation of the EGFR promoter on ecDNAs. We distinguished heterogeneous ecDNA species within the same sample by size and sequence with base-pair resolution and discovered functionally specialized ecDNAs that amplify select enhancers or oncogene-coding sequences.

Details

Database :
OAIster
Journal :
Nature genetics; vol 54, iss 11, 1746-1754; 1061-4036
Notes :
application/pdf, Nature genetics vol 54, iss 11, 1746-1754 1061-4036
Publication Type :
Electronic Resource
Accession number :
edsoai.on1391586593
Document Type :
Electronic Resource