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PMID: 19573809 已发表 · ppublish 英语

AKT-independent signaling downstream of oncogenic PIK3CA mutations in human cancer.

Cancer cell ·第 16 卷 ·第 1 期 ·2009-07-29

Vasudevan Krishna M, Barbie David A, Davies Michael A, Rabinovsky Rosalia, McNear Chontelle J, Kim Jessica J, Hennessy Bryan T, Tseng Hsiuyi, Pochanard Panisa, Kim So Young, Dunn Ian F, Schinzel Anna C, Sandy Peter, Hoersch Sebastian, Sheng Qing, Gupta Piyush B, Boehm Jesse S, Reiling Jan H, Silver Serena, Lu Yiling, Stemke-Hale Katherine, Dutta Bhaskar, Joy Corwin, Sahin Aysegul A, Gonzalez-Angulo Ana Maria, Lluch Ana, Rameh Lucia E, Jacks Tyler, Root David E, Lander Eric S, Mills Gordon B, Hahn William C, Sellers William R, Garraway Levi A

摘要

Dysregulation of the phosphatidylinositol 3-kinase (PI3K) signaling pathway occurs frequently in human cancer. PTEN tumor suppressor or PIK3CA oncogene mutations both direct PI3K-dependent tumorigenesis largely through activation of the AKT/PKB kinase. However, here we show through phosphoprotein profiling and functional genomic studies that many PIK3CA mutant cancer cell lines and human breast tumors exhibit only minimal AKT activation and a diminished reliance on AKT for anchorage-independent growth. Instead, these cells retain robust PDK1 activation and membrane localization and exhibit dependency on the PDK1 substrate SGK3. SGK3 undergoes PI3K- and PDK1-dependent activation in PIK3CA mutant cancer cells. Thus, PI3K may promote cancer through both AKT-dependent and AKT-independent mechanisms. Knowledge of differential PI3K/PDK1 signaling could inform rational therapeutics in cancers harboring PIK3CA mutations.

文献信息
期刊
Cancer cell
期刊简称
Cancer Cell
发表日期
2009-07-29
收录日期
2009-07-03
更新日期
2016-11-25
语言
英语
国家/地区
United States
NLM ID
101130617
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