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PMID: 27465249 Published · epublish English

PIK3CA dependence and sensitivity to therapeutic targeting in urothelial carcinoma.

BMC cancer ·Vol. 16 ·0000-00-00

Ross R L, McPherson H R, Kettlewell L, Shnyder S D, Hurst C D, Alder O, Knowles M A

Abstract

Many urothelial carcinomas (UC) contain activating PIK3CA mutations. In telomerase-immortalized normal urothelial cells (TERT-NHUC), ectopic expression of mutant PIK3CA induces PI3K pathway activation, cell proliferation and cell migration. However, it is not clear whether advanced UC tumors are PIK3CA-dependent and whether PI3K pathway inhibition is a good therapeutic option in such cases.,We used retrovirus-mediated delivery of shRNA to knock down mutant PIK3CA in UC cell lines and assessed effects on pathway activation, cell proliferation, migration and tumorigenicity. The effect of the class I PI3K inhibitor GDC-0941 was assessed in a panel of UC cell lines with a range of known molecular alterations in the PI3K pathway.,Specific knockdown of PIK3CA inhibited proliferation, migration, anchorage-independent growth and in vivo tumor growth of cells with PIK3CA mutations. Sensitivity to GDC-0941 was dependent on hotspot PIK3CA mutation status. Cells with rare PIK3CA mutations and co-occurring TSC1 or PTEN mutations were less sensitive. Furthermore, downstream PI3K pathway alterations in TSC1 or PTEN or co-occurring AKT1 and RAS gene mutations were associated with GDC-0941 resistance.,Mutant PIK3CA is a potent oncogenic driver in many UC cell lines and may represent a valuable therapeutic target in advanced bladder cancer.

Keywords
Bladder cancer PI3K signaling PIK3CA Urothelium
Article Info
Journal
BMC cancer
Abbr.
BMC Cancer
Published
0000-00-00
Indexed
2016-07-28
Updated
2016-07-30
Language
English
Country/Region
England
NLM ID
100967800
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