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工程化细胞外染色体DNA介导的原代细胞永生化和转化

Immortalization and transformation of primary cells mediated by engineered ecDNAs.

作者信息

Pradella Davide, Zhang Minsi, Gao Rui, Yao Melissa A, Gluchowska Katarzyna M, Florez Ylenia Cendon, Mishra Tanmay, Rocca Gaspare La, Weigl Moritz, Jiao Ziqi, Nguyen Hieu H M, Grimm Felix, Lisi Marta, Mastroleo Chiara, Chen Kevin, Luebeck Jens, Bafna Vineet, Antonescu Cristina R, Ventura Andrea

出版信息

bioRxiv. 2023 Jun 26:2023.06.25.546239. doi: 10.1101/2023.06.25.546239.

Abstract

Focal 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 inducible - and -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.

摘要

局灶性基因扩增是最常见的癌症相关突变之一,但事实证明,在原代细胞和模式生物中重现它们的进化过程及其对肿瘤发生的作用具有挑战性。在此,我们描述了一种通用方法,可在癌细胞系和源自基因工程小鼠的原代细胞中以时空可控的方式构建由染色体外环状DNA(ecDNA,也称为“双微体”)介导的大片段(>1 Mbp)局灶性扩增。通过这种策略,ecDNA的形成可与荧光报告基因或其他选择标记的表达相结合,以识别和追踪含ecDNA的细胞。我们通过在近二倍体人类细胞中构建含MDM2的ecDNA来证明这种方法的可行性,结果表明绿色荧光蛋白(GFP)表达可用于追踪生理条件下或存在特定选择压力时ecDNA的动态变化。我们还应用此方法培育出了携带可诱导的含p53和MDM2的ecDNA的小鼠,类似于人类癌症中自发出现的情况。我们发现,工程化的ecDNA在源自这些动物的原代细胞中迅速积累,促进细胞增殖、永生化和转化。

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