Early TP53 alterations engage environmental exposures to promote gastric premalignancy in an integrative mouse model

CDKN2A 生物 癌症 表型 发育不良 癌症研究 体细胞 遗传学 基因 疾病 癌变 病理 医学
作者
Nilay S. Sethi,Osamu Kikuchi,Gina N. Duronio,Matthew D. Stachler,James M. McFarland,Rubén Ferrer-Luna,Yanxi Zhang,Chunyang Bao,Roderick T. Bronson,Deepa T. Patil,Francisco Sánchez-Vega,Jie-Bin Liu,Ewa Sicińska,Jean‐Bernard Lazaro,Keith L. Ligon,Rameen Beroukhim,Adam J. Bass
出处
期刊:Nature Genetics [Nature Portfolio]
卷期号:52 (2): 219-230 被引量:59
标识
DOI:10.1038/s41588-019-0574-9
摘要

Somatic alterations in cancer genes are being detected in normal and premalignant tissue, thus placing greater emphasis on gene–environment interactions that enable disease phenotypes. By combining early genetic alterations with disease-relevant exposures, we developed an integrative mouse model to study gastric premalignancy. Deletion of Trp53 in gastric cells confers a selective advantage and promotes the development of dysplasia in the setting of dietary carcinogens. Organoid derivation from dysplastic lesions facilitated genomic, transcriptional and functional evaluation of gastric premalignancy. Cell cycle regulators, most notably Cdkn2a, were upregulated by p53 inactivation in gastric premalignancy, serving as a barrier to disease progression. Co-deletion of Cdkn2a and Trp53 in dysplastic gastric organoids promoted cancer phenotypes but also induced replication stress, exposing a susceptibility to DNA damage response inhibitors. These findings demonstrate the utility of mouse models that integrate genomic alterations with relevant exposures and highlight the importance of gene–environment interactions in shaping the premalignant state. A mouse model that combines nitrosamide exposure with inducible, tissue-specific TP53 alterations is used to generate premalignant gastric organoids and provides insights into the development of gastric premalignancy.
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