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PMID: 21822287 已发表 · epublish 英语

Oncogenic PIK3CA-driven mammary tumors frequently recur via PI3K pathway-dependent and PI3K pathway-independent mechanisms.

Nature medicine ·第 17 卷 ·第 9 期 ·2011-11-18

Liu Pixu, Cheng Hailing, Santiago Stephanie, Raeder Maria, Zhang Fan, Isabella Adam, Yang Janet, Semaan Derek J, Chen Changzhong, Fox Edward A, Gray Nathanael S, Monahan John, Schlegel Robert, Beroukhim Rameen, Mills Gordon B, Zhao Jean J

摘要

PIK3CA gain-of-function mutations are a common oncogenic event in human malignancy, making phosphatidylinositol 3-kinase (PI3K) a target for cancer therapy. Despite the promise of targeted therapy, resistance often develops, leading to treatment failure. To elucidate mechanisms of resistance to PI3K-targeted therapy, we constructed a mouse model of breast cancer conditionally expressing human PIK3CA(H1047R). Notably, most PIK3CA(H1047R)-driven mammary tumors recurred after PIK3CA(H1047R) inactivation. Genomic analyses of recurrent tumors revealed multiple lesions, including focal amplification of Met or Myc (also known as c-Met and c-Myc, respectively). Whereas Met amplification led to tumor survival dependent on activation of endogenous PI3K, tumors with Myc amplification became independent of the PI3K pathway. Functional analyses showed that Myc contributed to oncogene independence and resistance to PI3K inhibition. Notably, PIK3CA mutations and c-MYC elevation co-occur in a substantial fraction of human breast tumors. Together, these data suggest that c-MYC elevation represents a potential mechanism by which tumors develop resistance to current PI3K-targeted therapies.

文献信息
期刊
Nature medicine
期刊简称
Nat Med
发表日期
2011-11-18
收录日期
2011-09-08
更新日期
2016-11-22
语言
英语
国家/地区
United States
NLM ID
9502015
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