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NFATC4 promotes quiescence and chemotherapy resistance in ovarian cancer
Alexander J. Cole, Mangala Iyengar, Santiago Panesso-Gómez, Patrick O’Hayer, Daniel Chan, Greg M. Delgoffe, Katherine M. Aird, Euisik Yoon, Shoumei Bai, Ronald J. Buckanovich
Alexander J. Cole, Mangala Iyengar, Santiago Panesso-Gómez, Patrick O’Hayer, Daniel Chan, Greg M. Delgoffe, Katherine M. Aird, Euisik Yoon, Shoumei Bai, Ronald J. Buckanovich
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Research Article Therapeutics

NFATC4 promotes quiescence and chemotherapy resistance in ovarian cancer

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Abstract

Development of chemotherapy resistance is a major problem in ovarian cancer. One understudied mechanism of chemoresistance is the induction of quiescence, a reversible nonproliferative state. Unfortunately, little is known about regulators of quiescence. Here, we identify the master transcription factor nuclear factor of activated T cells cytoplasmic 4 (NFATC4) as a regulator of quiescence in ovarian cancer. NFATC4 is enriched in ovarian cancer stem-like cells and correlates with decreased proliferation and poor prognosis. Treatment of cancer cells with cisplatin resulted in NFATC4 nuclear translocation and activation of the NFATC4 pathway, while inhibition of the pathway increased chemotherapy response. Induction of NFATC4 activity resulted in a marked decrease in proliferation, G0 cell cycle arrest, and chemotherapy resistance, both in vitro and in vivo. Finally, NFATC4 drove a quiescent phenotype in part via downregulation of MYC. Together, these data identify NFATC4 as a driver of quiescence and a potential new target to combat chemoresistance in ovarian cancer.

Authors

Alexander J. Cole, Mangala Iyengar, Santiago Panesso-Gómez, Patrick O’Hayer, Daniel Chan, Greg M. Delgoffe, Katherine M. Aird, Euisik Yoon, Shoumei Bai, Ronald J. Buckanovich

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Figure 11

NFATC4 overexpression inhibits MYC, and MYC overexpression partially rescues the quiescent phenotype at early, but not late, time points.

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NFATC4 overexpression inhibits MYC, and MYC overexpression partially re...
(A) MYC mRNA expression following 24-hour doxycycline treatment. SKOV3 (n = 4), HEY1 (n = 3). (B) Validation of MYC overexpression construct in SKOV3 and HEY1 cell lines (n = 3). (C) The effect of MYC overexpression on cell number of IcNFATC4 cells transfected with pcDNA3 or MYC and treated with doxycycline for 72 hours (SKOV3 n = 5; HEY1 n = 3) or posttreated for 72 hours (SKOV3 n = 4; HEY1 n = 3) with doxycycline before transfection with pcDNA3 or MYC and treated with doxycycline for an additional 72 hours. T tests and 1-way ANOVAs were performed to determine significance. n.s., not significant; *P < 0.05; **P < 0.01; ****P < 0.0001.

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