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PI3K regulates TAZ/YAP and mTORC1 axes that can be synergistically targeted
Keith C. Garcia, Ali A. Khan, Krishnendu Ghosh, Souradip Sinha, Nicholas Scalora, Gillian DeWane, Colleen Fullenkamp, Nicole Merritt, Yuliia Drebot, Samuel Y. Yu, Mariah Leidinger, Michael D. Henry, Patrick J. Breheny, Michael S. Chimenti, Munir R. Tanas
Keith C. Garcia, Ali A. Khan, Krishnendu Ghosh, Souradip Sinha, Nicholas Scalora, Gillian DeWane, Colleen Fullenkamp, Nicole Merritt, Yuliia Drebot, Samuel Y. Yu, Mariah Leidinger, Michael D. Henry, Patrick J. Breheny, Michael S. Chimenti, Munir R. Tanas
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Research Article Cell biology Oncology

PI3K regulates TAZ/YAP and mTORC1 axes that can be synergistically targeted

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Abstract

Sarcomas are a heterogeneous group of cancers with few shared therapeutic targets. We show that PI3K signaling is frequently activated in sarcomas due to PTEN loss (in 30%–60%), representing a common therapeutic target. The PI3K pathway has lacked a downstream oncogenic transcription factor. We show TAZ and YAP are transcriptional coactivators regulated by PI3K and drive a transcriptome necessary for tumor growth in a PI3K-driven sarcoma mouse model. This PI3K/TAZ/YAP axis exists in parallel to the known PI3K/AKT/mTORC1 axis, providing a rationale for combination therapy targeting the TAZ/YAP-TEAD interaction and mTORC1. Combination therapy using IK-930 (TEAD inhibitor) and everolimus (mTORC1 inhibitor) synergistically diminished proliferation and anchorage-independent growth of PI3K-activated sarcoma cell lines at low, physiologically achievable doses. Furthermore, this combination therapy showed a synergistic effect in vivo, suggesting that an integrated view of PI3K and Hippo signaling can be leveraged therapeutically in PI3K-activated sarcomas.

Authors

Keith C. Garcia, Ali A. Khan, Krishnendu Ghosh, Souradip Sinha, Nicholas Scalora, Gillian DeWane, Colleen Fullenkamp, Nicole Merritt, Yuliia Drebot, Samuel Y. Yu, Mariah Leidinger, Michael D. Henry, Patrick J. Breheny, Michael S. Chimenti, Munir R. Tanas

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Figure 2

PI3K inhibition alters the stability and localization of TAZ/YAP in SJCRH30 and A204 cells.

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PI3K inhibition alters the stability and localization of TAZ/YAP in SJCR...
(A) Western blot of SJCRH30 and A204 cells treated with 30 μM LY294002 for the indicated time points. (B and C) Western blot of TAZ/YAP upon siRNA-mediated knock down of PIK3CA (p110α) in SJCRH30 (B) and A204 (C) cells. (D and E) Immunofluorescence analysis of SJCRH30 (D) or A204 (E) cells that were treated with 60 μM LY2094002 for 3 hours and 6 hours, respectively (see Methods for details). (F and G) Nuclear and cytoplasmic fractionation of SJCRH30 cells (F) and A204 cells (G) treated with vehicle (DMSO) or 60 μM LY294002. Luciferase activity measured upon siRNA (pooled) mediated knockdown of PIK3CA for 96 hours in (H) SJCRH30 cells and (I) A204 cells stably expressing a TEAD luciferase reporter. Statistical analysis was performed using unpaired 2-tailed Student’s t test. Each experiment was repeated at least twice. Data are shown as mean ± SD. *P < 0.05, ****P < 0.0001, ns not statistically significant. Each experiment was repeated at least twice.

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