Immortalization and transformation of primary cells mediated by engineered ecDNAs

Author:

Pradella Davide,Zhang Minsi,Gao Rui,Yao Melissa A.,Gluchowska Katarzyna M.,Florez Ylenia Cendon,Mishra Tanmay,Rocca Gaspare LaORCID,Weigl MoritzORCID,Jiao Ziqi,Nguyen Hieu H.M.,Grimm Felix,Lisi Marta,Mastroleo Chiara,Chen Kevin,Luebeck JensORCID,Bafna VineetORCID,Antonescu Cristina R.ORCID,Ventura AndreaORCID

Abstract

ABSTRACTFocal gene amplifications are among the most common cancer-associated mutations, but their evolution and contribution to tumorigenesis have proven challenging to recapitulate in primary cells and model organisms. Here we describe a general approach to engineer large (>1 Mbp) focal amplifications mediated by extrachromosomal circular DNAs (ecDNAs, also known as “double minutes”) in a spatiotemporally controlled manner in cancer cell lines and in primary cells derived from genetically engineered mice. With this strategy, ecDNA formation can be coupled with expression of fluorescent reporters or other selectable markers to enable the identification and tracking of ecDNA-containing cells. We demonstrate the feasibility of this approach by engineering MDM2-containing ecDNAs in near-diploid human cells, showing that GFP expression can be used to track ecDNA dynamics under physiological conditions or in the presence of specific selective pressures. We also apply this approach to generate mice harboring inducibleMyc- andMdm2-containing ecDNAs analogous to those spontaneously occurring in human cancers. We show that the engineered ecDNAs rapidly accumulate in primary cells derived from these animals, promoting proliferation, immortalization, and transformation.

Publisher

Cold Spring Harbor Laboratory

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