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The enrichment of breakpoints in late-replicating chromatin provides novel insights into chromoanagenesis mechanisms

Authors :
Marie-France Portnoï
Alexandre Reymond
Sandra Chantot-Bastaraud
Giuliana Giannuzzi
Eleonora Porcu
Yvan Herenger
Flavie Ader
Tony Yammine
Patrick Edery
Pierre-Antoine Rollat-Farnier
Flavie Diguet
Laurence Faivre
Alice Masurel-Paulet
Nathalie Marle
Kévin Uguen
Claire Bardel
Julia Lauer Zillhardt
Alistair T. Pagnamenta
Nicolas Chatron
Jenny C. Taylor
Stéphanie Valence
Andrew O.M. Wilkie
Solveig Heide
Emilie Chopin
Fabienne Prieur
Nora Chelloug
Christèle Dubourg
Marlène Rio
Eduardo Calpena
Zohra-Lydia Bellil
Arthur Sorlin
Laurence Lohmann
Sylvie Jaillard
Alexandra Afenjar
Corinne Metay
Jean-Pierre Siffroi
Damien Sanlaville
Marie-Pierre Cordier
Boris Keren
Françoise Girard
Caroline Schluth-Bolard
Joris Andrieux
Samantha J. L. Knight
Reza Maroofian
James Lespinasse
Michèle Mathieu-Dramard
Patrick Callier
Publication Year :
2020
Publisher :
Cold Spring Harbor Laboratory, 2020.

Abstract

The rise of pangenomic molecular assays allowed uncovering complex rearrangements named chromoanagenesis that were hypothesized to result from catastrophic shattering events. Constitutional cases have typically been reported individually preventing identification of common features and uncovering the mechanisms at play. We characterized 20 new chromoanagenesis and discovered yet undescribed features. While literature differentiates chromothripsis and its shattering event repaired through non-homologous end joining from chromoanasynthesis born to aberrant replicative processes, we identified shattered chromosomes repaired through a combination of mechanisms. In particular, three samples present with “rearrangement hubs” comprising a fragmented kilobase-long sequence threaded throughout the rearrangement.To assess the mechanisms at play, we merged our data with those of 20 published constitutional complex chromosomal rearrangement cases. We evaluated if the distribution of their 1032 combined breakpoints was distinctive using bootstrap simulations and found that breakpoints tend to keep away from haplosensitive genes suggesting selective pressure. We then compared their distribution with that of 13,310 and 468 breakpoints of cancer complex chromosomal rearrangements and constitutional simple rearrangement samples, respectively. Both complex rearrangement groups showed breakpoint enrichment in late replicating regions suggesting similar origins for constitutional and cancer cases. Simple rearrangement breakpoints but not complex ones were depleted from lamina-associated domains (LADs), possibly as a consequence of reduced mobility of DNA ends bound to lamina.The enrichment of breakpoints in late-replicating chromatin for both constitutional and cancer chromoanagenesis provides an orthogonal support to the premature chromosome condensation hypothesis that was put forward to explain chromoanagenesis.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........fbb06baaefddfcce5f3b63fb41a59581
Full Text :
https://doi.org/10.1101/2020.07.17.206771