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PMID: 23657012 已发表 · ppublish 英语

Palb2 synergizes with Trp53 to suppress mammary tumor formation in a model of inherited breast cancer.

Bowman-Colin Christian, Xia Bing, Bunting Samuel, Klijn Christiaan, Drost Rinske, Bouwman Peter, Fineman Laura, Chen Xixi, Culhane Aedin C, Cai Hong, Rodig Scott J, Bronson Roderick T, Jonkers Jos, Nussenzweig Andre, Kanellopoulou Chryssa, Livingston David M

摘要

Germ-line mutations in PALB2 lead to a familial predisposition to breast and pancreatic cancer or to Fanconi Anemia subtype N. PALB2 performs its tumor suppressor role, at least in part, by supporting homologous recombination-type double strand break repair (HR-DSBR) through physical interactions with BRCA1, BRCA2, and RAD51. To further understand the mechanisms underlying PALB2-mediated DNA repair and tumor suppression functions, we targeted Palb2 in the mouse. Palb2-deficient murine ES cells recapitulated DNA damage defects caused by PALB2 depletion in human cells, and germ-line deletion of Palb2 led to early embryonic lethality. Somatic deletion of Palb2 driven by K14-Cre led to mammary tumor formation with long latency. Codeletion of both Palb2 and Tumor protein 53 (Trp53) accelerated mammary tumor formation. Like BRCA1 and BRCA2 mutant breast cancers, these tumors were defective in RAD51 focus formation, reflecting a defect in Palb2 HR-DSBR function, a strongly suspected contributor to Brca1, Brca2, and Palb2 mammary tumor development. However, unlike the case of Brca1-mutant cells, Trp53bp1 deletion failed to rescue the genomic instability of Palb2- or Brca2-mutant primary lymphocytes. Therefore, Palb2-driven DNA damage control is, in part, distinct from that executed by Brca1 and more similar to that of Brca2. The mechanisms underlying Palb2 mammary tumor suppression functions can now be explored genetically in vivo.

关键词
familial breast cancer mouse model
文献信息
期刊
Proceedings of the National Academy of Sciences of the United States of America
期刊简称
Proc Natl Acad Sci U S A
发表日期
2013-08-06
收录日期
2013-05-22
更新日期
2016-10-19
语言
英语
国家/地区
United States
NLM ID
7505876
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