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PMID: 27451907 Published · ppublish English

PDK1-SGK1 Signaling Sustains AKT-Independent mTORC1 Activation and Confers Resistance to PI3Kα Inhibition.

Cancer cell ·Vol. 30 ·No. 2 ·0000-00-00

Castel Pau, Ellis Haley, Bago Ruzica, Toska Eneda, Razavi Pedram, Carmona F Javier, Kannan Srinivasaraghavan, Verma Chandra S, Dickler Maura, Chandarlapaty Sarat, Brogi Edi, Alessi Dario R, Baselga José, Scaltriti Maurizio

Abstract

PIK3CA, which encodes the p110α subunit of PI3K, is frequently mutated and oncogenic in breast cancer. PI3Kα inhibitors are in clinical development and despite promising early clinical activity, intrinsic resistance is frequent among patients. We have previously reported that residual downstream mTORC1 activity upon treatment with PI3Kα inhibitors drives resistance to these agents. However, the mechanism underlying this phenotype is not fully understood. Here we show that in cancer cells resistant to PI3Kα inhibition, PDK1 blockade restores sensitivity to these therapies. SGK1, which is activated by PDK1, contributes to the maintenance of residual mTORC1 activity through direct phosphorylation and inhibition of TSC2. Targeting either PDK1 or SGK1 prevents mTORC1 activation, restoring the antitumoral effects of PI3Kα inhibition in resistant cells.

Article Info
Journal
Cancer cell
Abbr.
Cancer Cell
Published
0000-00-00
Indexed
2016-08-10
Updated
2016-12-06
Language
English
Country/Region
United States
NLM ID
101130617
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