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Inhibition of PI3K/mTOR leads to adaptive resistance in matrix-attached cancer cells.


ABSTRACT: The PI3K/mTOR-pathway is the most commonly dysregulated pathway in epithelial cancers and represents an important target for cancer therapeutics. Here, we show that dual inhibition of PI3K/mTOR in ovarian cancer-spheroids leads to death of inner matrix-deprived cells, whereas matrix-attached cells are resistant. This matrix-associated resistance is mediated by drug-induced upregulation of cellular survival programs that involve both FOXO-regulated transcription and cap-independent translation. Inhibition of any one of several upregulated proteins, including Bcl-2, EGFR, or IGF1R, abrogates resistance to PI3K/mTOR inhibition. These results demonstrate that acute adaptive responses to PI3K/mTOR inhibition in matrix-attached cells resemble well-conserved stress responses to nutrient and growth factor deprivation. Bypass of this resistance mechanism through rational design of drug combinations could significantly enhance PI3K-targeted drug efficacy.

SUBMITTER: Muranen T 

PROVIDER: S-EPMC3297962 | biostudies-literature | 2012 Feb

REPOSITORIES: biostudies-literature

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Inhibition of PI3K/mTOR leads to adaptive resistance in matrix-attached cancer cells.

Muranen Taru T   Selfors Laura M LM   Worster Devin T DT   Iwanicki Marcin P MP   Song Loling L   Morales Fabiana C FC   Gao Sizhen S   Mills Gordon B GB   Brugge Joan S JS  

Cancer cell 20120201 2


The PI3K/mTOR-pathway is the most commonly dysregulated pathway in epithelial cancers and represents an important target for cancer therapeutics. Here, we show that dual inhibition of PI3K/mTOR in ovarian cancer-spheroids leads to death of inner matrix-deprived cells, whereas matrix-attached cells are resistant. This matrix-associated resistance is mediated by drug-induced upregulation of cellular survival programs that involve both FOXO-regulated transcription and cap-independent translation. I  ...[more]

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