Unknown

Dataset Information

0

Brca2 deficiency drives gastrointestinal tumor formation and is selectively inhibited by mitomycin C.


ABSTRACT: BRCA2 is crucial for repairing DNA double-strand breaks with high fidelity, and loss of BRCA2 increases the risks of developing breast and ovarian cancers. Herein, we show that BRCA2 is inactively mutated in 10% of gastric and 7% of colorectal adenocarcinomas, and that this inactivation is significantly correlated with microsatellite instability. Villin-driven Brca2 depletion promotes mouse gastrointestinal tumor formation when genome instability is increased. Whole-genome screening data showed that these BRCA2 monoallelic and biallelic mutant tumors were selectively inhibited by mitomycin C. Mechanistically, mitomycin C provoked double-strand breaks in cancer cells that often recruit wild-type BRCA2 for repair; the failure to repair double-strand breaks caused cell-cycle arrest at the S phase and p53-mediated cell apoptosis of BRCA2 monoallelic and biallelic mutant tumor cells. Our study unveils the role of BRCA2 loss in the development of gastrointestinal tumors and provides a potential therapeutic strategy to eliminate BRCA2 monoallelic and biallelic mutant tumors through mitomycin C.

SUBMITTER: Chen X 

PROVIDER: S-EPMC7519908 | biostudies-literature | 2020 Sep

REPOSITORIES: biostudies-literature

altmetric image

Publications

Brca2 deficiency drives gastrointestinal tumor formation and is selectively inhibited by mitomycin C.

Chen Xiaomin X   Peng Fangfei F   Ji Yan Y   Xiang Honggang H   Wang Xiang X   Liu Tingting T   Wang Heng H   Han Yumin Y   Wang Changxu C   Zhang Yongfeng Y   Kong Xiangyin X   Lang Jing-Yu JY  

Cell death & disease 20200926 9


BRCA2 is crucial for repairing DNA double-strand breaks with high fidelity, and loss of BRCA2 increases the risks of developing breast and ovarian cancers. Herein, we show that BRCA2 is inactively mutated in 10% of gastric and 7% of colorectal adenocarcinomas, and that this inactivation is significantly correlated with microsatellite instability. Villin-driven Brca2 depletion promotes mouse gastrointestinal tumor formation when genome instability is increased. Whole-genome screening data showed  ...[more]

Similar Datasets

| PRJEB101778 | ENA
| S-EPMC12869195 | biostudies-literature
| S-EPMC4229861 | biostudies-literature
| S-EPMC2913123 | biostudies-literature
| S-EPMC6127343 | biostudies-literature
| S-EPMC4466642 | biostudies-literature