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Abstract

Extrachromosomal circular DNA (eccDNA) derived from chromosomal Ty retrotransposons in yeast can be generated in multiple ways. Ty eccDNA can arise from the circularization of extrachromosomal linear DNA during the transpositional life cycle of retrotransposons, or from circularization of genomic Ty DNA. Circularization may happen through nonhomologous end-joining (NHEJ) of long terminal repeats (LTRs) flanking Ty elements, by Ty autointegration, or by LTR–LTR recombination. By performing an in-depth investigation of sequence reads stemming from Ty eccDNAs obtained from populations of Saccharomyces cerevisiae S288c, we find that eccDNAs predominantly correspond to full-length Ty1 elements. Analyses of sequence junctions reveal no signs of NHEJ or autointegration events. We detect recombination junctions that are consistent with yeast Ty eccDNAs being generated through recombination events within the genome. This opens the possibility that retrotransposable elements could move around in the genome without an RNA intermediate directly through DNA circularization.

Details

Title
Formation of Extrachromosomal Circular DNA from Long Terminal Repeats of Retrotransposons in Saccharomyces cerevisiae
Author
Møller, Henrik D 1 ; Larsen, Camilla E 1 ; Parsons, Lance 2 ; Hansen, Anders Johannes 3 ; Regenberg, Birgitte 1 ; Mourier, Tobias 4 

 Department of Biology, University of Copenhagen, DK-2200 Copenhagen N, Denmark 
 Lewis-Sigler Institute for Integrative Genomics, Princeton University, New Jersey 08544 
 Center for GeoGenetics, Natural History Museum of Denmark, University of Copenhagen, DK-1350 Copenhagen K, Denmark 
 Department of Biology, University of Copenhagen, DK-2200 Copenhagen N, Denmark; Center for GeoGenetics, Natural History Museum of Denmark, University of Copenhagen, DK-1350 Copenhagen K, Denmark 
Pages
453-462
Publication year
2016
Publication date
Feb 1, 2016
Publisher
Oxford University Press
e-ISSN
21601836
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
3169750992
Copyright
© 2016 by the Genetics Society of America.