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Citations to this article

FOXK2 promotes ovarian cancer stemness by regulating the unfolded protein response pathway
Yaqi Zhang, … , Mazhar Adli, Daniela Matei
Yaqi Zhang, … , Mazhar Adli, Daniela Matei
Published March 29, 2022
Citation Information: J Clin Invest. 2022;132(10):e151591. https://doi.org/10.1172/JCI151591.
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Research Article Cell biology Oncology Article has an altmetric score of 17

FOXK2 promotes ovarian cancer stemness by regulating the unfolded protein response pathway

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Abstract

Understanding the regulatory programs enabling cancer stem cells (CSCs) to self-renew and drive tumorigenicity could identify new treatments. Through comparative chromatin-state and gene expression analyses in ovarian CSCs versus non-CSCs, we identified FOXK2 as a highly expressed stemness-specific transcription factor in ovarian cancer. Its genetic depletion diminished stemness features and reduced tumor initiation capacity. Our mechanistic studies highlight that FOXK2 directly regulated IRE1α (encoded by ERN1) expression, a key sensor for the unfolded protein response (UPR). Chromatin immunoprecipitation and sequencing revealed that FOXK2 bound to an intronic regulatory element of ERN1. Blocking FOXK2 from binding to this enhancer by using a catalytically inactive CRISPR/Cas9 (dCas9) diminished IRE1α transcription. At the molecular level, FOXK2-driven upregulation of IRE1α led to alternative XBP1 splicing and activation of stemness pathways, while genetic or pharmacological blockade of this sensor of the UPR inhibited ovarian CSCs. Collectively, these data establish what we believe is a new function for FOXK2 as a key transcriptional regulator of CSCs and a mediator of the UPR, providing insight into potentially targetable new pathways in CSCs.

Authors

Yaqi Zhang, Yinu Wang, Guangyuan Zhao, Edward J. Tanner, Mazhar Adli, Daniela Matei

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Total citations by year

Year: 2025 2024 2023 2022 Total
Citations: 2 11 6 2 21
Citation information
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Citations to this article (21)

Title and authors Publication Year
Endoplasmic Reticulum Stress: Triggers Microenvironmental Regulation and Drives Tumor Evolution
Peng C, Wang J, Wang S, Zhao Y, Wang H, Wang Y, Ma Y, Yang J
Cancer Medicine 2025
A comprehensive overview of ovarian cancer stem cells: correlation with high recurrence rate, underlying mechanisms, and therapeutic opportunities
Alizadeh H, Akbarabadi P, Dadfar A, Tareh MR, Soltani B
Molecular Cancer 2025
Emerging mechanisms of the unfolded protein response in therapeutic resistance: from chemotherapy to Immunotherapy.
He J, Zhou Y, Sun L
Cell communication and signaling : CCS 2024
Nanoparticle Targeting in Chemo‐Resistant Ovarian Cancer Reveals Dual Axis of Therapeutic Vulnerability Involving Cholesterol Uptake and Cell Redox Balance
Wang Y, Calvert AE, Cardenas H, Rink JS, Nahotko D, Qiang W, Ndukwe CE, Chen F, Keathley R, Zhang Y, Cheng J, Thaxton CS, Matei D
Advanced Science 2024
Independent organelle and organelle—organelle interactions: essential mechanisms for malignant gynecological cancer cell survival
Shen Y, Chen QC, Li CY, Han FJ
Frontiers in immunology 2024
NB compounds are potent and efficacious FOXM1 inhibitors in high-grade serous ovarian cancer cells
Liu C, Vorderbruggen M, Muñoz-Trujillo C, Kim SH, Katzenellenbogen JA, Katzenellenbogen BS, Karpf AR
Journal of Ovarian Research 2024
Emerging roles of FOXK2 in cancers and metabolic disorders.
Xing X, Que X, Zheng S, Wang S, Song Q, Yao Y, Zhang P
Frontiers in Oncology 2024
Phosphorylation of FOXK2 at Thr13 and Ser30 by PDK2 sustains glycolysis through a positive feedback manner in ovarian cancer.
Zhang C, Xu Y, Zhu X, Zhang X, Wang F, Hu L, Lu H, Tao C, Xu K, Zhang Z, Li D, Shi T, Zhang R
Oncogene 2024
TRIM Expression in HNSCC: Exploring the Link Between Ubiquitination, Immune Infiltration, and Signaling Pathways Through Bioinformatics.
Wang K, Zhu W, Huang W, Huang K, Luo H, Long L, Yi B
International journal of general medicine 2024
FOXK2 amplification promotes breast cancer development and chemoresistance
Yu Y, Cao WM, Cheng F, Shi Z, Han L, Yi J, da Silva EM, Dopeso H, Chen H, Yang J, Wang X, Zhang C, Zhang H
Cancer Letters 2024
Endoplasmic reticulum stress in diseases
Liu Y, Xu C, Gu R, Han R, Li Z, Xu X
MedComm 2024
Endoplasmic reticulum stress response pathway-mediated cell death in ovarian cancer
Chen Q, Li C, Wei W, Li J, Liu F, Fu Y, Tang L, Han F
Frontiers in Oncology 2024
Exploiting the Warburg Effect: Co‐Delivery of Metformin and FOXK2 siRNA for Ovarian Cancer Therapy
Zhou W, Ma X, Xiao J, He X, Liu C, Xu X, Viitala T, Feng J, Zhang H
Small Science 2024
A novel defined risk signature of endoplasmic reticulum stress-related genes for predicting the prognosis and immune infiltration status of ovarian cancer
Journal of Zhejiang University. Science. B 2023
The roles and molecular mechanisms of long non-coding RNA WT1-AS in the maintenance and development of gastric cancer stem cells
Zhang X, Jin M, Liu S, Zang M, Hu L, Du T, Zhang B
Heliyon 2023
HMGB3 promotes the malignant phenotypes and stemness of epithelial ovarian cancer through the MAPK/ERK signaling pathway.
Ma H, Qi G, Han F, Gai P, Peng J, Kong B
Cell communication and signaling : CCS 2023
FOXK2 amplification and overexpression promotes breast cancer development and chemoresistance
Yu Y, Cao WM, Cheng F, Shi Z, Han L, Yi JL, da Silva EM, Dopeso H, Chen H, Yang J, Wang X, Zhang C, Zhang H
2023
HLF promotes ovarian cancer progression and chemoresistance via regulating Hippo signaling pathway.
Han T, Chen T, Chen L, Li K, Xiang D, Dou L, Li H, Gu Y
Cell Death and Disease 2023
UPR-induced ovarian cancer cell fusion: a mechanism favoring drug resistance?
Husein M, Petignat P, Cohen M
Oncoscience 2023
Decoding endoplasmic reticulum stress signals in cancer cells and antitumor immunity.
Salvagno C, Mandula JK, Rodriguez PC, Cubillos-Ruiz JR
Trends in Cancer 2022
FOXK2 transcription factor and its roles in tumorigenesis (Review)
Wang Z, Liu X, Wang Z, Hu Z
Oncology Letters 2022

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