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工程化的染色体外致癌基因扩增促进肿瘤发生。

Engineered extrachromosomal oncogene amplifications promote tumorigenesis.

作者信息

Pradella Davide, Zhang Minsi, Gao Rui, Yao Melissa A, Gluchowska Katarzyna M, Cendon-Florez Ylenia, Mishra Tanmay, La Rocca Gaspare, Weigl Moritz, Jiao Ziqi, Nguyen Hieu H M, Lisi Marta, Ozimek Mateusz M, Mastroleo Chiara, Chen Kevin, Grimm Felix, Luebeck Jens, Zhang Shu, Zolli Andrea Alice, Sun Eric G, Dameracharla Bhargavi, Zhao Zhengqiao, Pritykin Yuri, Sigel Carlie, Chang Howard Y, Mischel Paul S, Bafna Vineet, Antonescu Cristina R, Ventura Andrea

机构信息

Cancer Biology and Genetics Program, Memorial Sloan Kettering Cancer Center, New York, NY, USA.

Department of Radiation Oncology, Memorial Sloan Kettering Cancer Center, New York, NY, USA.

出版信息

Nature. 2025 Jan;637(8047):955-964. doi: 10.1038/s41586-024-08318-8. Epub 2024 Dec 18.

Abstract

Focal gene amplifications are among the most common cancer-associated mutations but have proven challenging to engineer in primary cells and model organisms. Here we describe a general strategy to engineer large (more than 1 Mbp) focal amplifications mediated by extrachromosomal DNAs (ecDNAs) in a spatiotemporally controlled manner in cells and in mice. By coupling ecDNA formation with expression of selectable markers, we track the dynamics of ecDNA-containing cells under physiological conditions and in the presence of specific selective pressures. We also apply this approach to generate mice harbouring Cre-inducible Myc- and Mdm2-containing ecDNAs analogous to those occurring in human cancers. We show that the engineered ecDNAs spontaneously accumulate in primary cells derived from these animals, promoting their proliferation, immortalization and transformation. Finally, we demonstrate the ability of Mdm2-containing ecDNAs to promote tumour formation in an autochthonous mouse model of hepatocellular carcinoma. These findings offer insights into the role of ecDNA-mediated gene amplifications in tumorigenesis. We anticipate that this approach will be valuable for investigating further unresolved aspects of ecDNA biology and for developing new preclinical immunocompetent mouse models of human cancers harbouring specific focal gene amplifications.

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进行工程改造具有挑战性。在此,我们描述了一种通用策略,可在细胞和小鼠中以时空可控的方式对由染色体外DNA(ecDNA)介导的大片段(超过1 Mbp)局灶性扩增进行工程改造。通过将ecDNA形成与选择标记的表达相结合,我们在生理条件下以及存在特定选择压力的情况下追踪含ecDNA细胞的动态变化。我们还应用此方法生成了携带Cre诱导型含Myc和Mdm2的ecDNA的小鼠,这些ecDNA类似于人类癌症中出现的情况。我们表明,工程化的ecDNA在源自这些动物的原代细胞中自发积累,促进其增殖、永生化和转化。最后,我们证明了含Mdm2的ecDNA在肝细胞癌原位小鼠模型中促进肿瘤形成的能力。这些发现为ecDNA介导的基因扩增在肿瘤发生中的作用提供了见解。我们预计,这种方法对于进一步研究ecDNA生物学中尚未解决的方面以及开发携带特定局灶性基因扩增的新型临床前具有免疫活性的人类癌症小鼠模型将具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12a7/11754114/4100fac71bb1/41586_2024_8318_Fig1_HTML.jpg

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