KCTD4 interacts with CLIC1 to disrupt calcium homeostasis and promote metastasis in esophageal cancer
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Jinbao Liu | W. Xu | Yan He | Xiaomei Yu | Zhi-Gang Li | G. Zhang | Zhi-Chao Liu | Jiao Xu | Han Yang | Tao-Yang Xu | Xing-Yuan Shi | Zhiqiang Jiang | Jing Yang | Can-Can Zheng | Guo-Geng Zhang | Xingyuan Shi
[1] Fan Zhang,et al. ANO1 reprograms cholesterol metabolism and the tumor microenvironment to promote cancer metastasis. , 2023, Cancer research.
[2] Yan He,et al. Lysine 2-hydroxyisobutyrylation of NAT10 promotes cancer metastasis in an ac4C-dependent manner , 2023, Cell Research.
[3] Zhiyuan Jiang,et al. N4-acetylcytidine modification of lncRNA CTC-490G23.2 promotes cancer metastasis through interacting with PTBP1 to increase CD44 alternative splicing , 2023, Oncogene.
[4] Qing‐Yu He,et al. Anti-HIV drug elvitegravir suppresses cancer metastasis via increased proteasomal degradation of m6A methyltransferase METTL3. , 2022, Cancer research.
[5] S. Schenone,et al. Chloride intracellular channel 1 activity is not required for glioblastoma development but its inhibition dictates glioma stem cell responsivity to novel biguanide derivatives , 2022, Journal of experimental & clinical cancer research : CR.
[6] Lihua Liu,et al. Long non-coding RNA NORAD/miR-224-3p/MTDH axis contributes to CDDP resistance of esophageal squamous cell carcinoma by promoting nuclear accumulation of β-catenin , 2021, Molecular cancer.
[7] W. Xiong,et al. The role of Ca2+/Calcineurin/NFAT signalling pathway in osteoblastogenesis , 2021, Cell proliferation.
[8] Xingfeng Yin,et al. Targeting PFKL with penfluridol inhibits glycolysis and suppresses esophageal cancer tumorigenesis in an AMPK/FOXO3a/BIM-dependent manner , 2021, Acta pharmaceutica Sinica. B.
[9] M. He,et al. Lomerizine 2HCl inhibits cell proliferation and induces protective autophagy in colorectal cancer via the PI3K/Akt/mTOR signaling pathway , 2021, MedComm.
[10] Qing‐Yu He,et al. Targeting PP2A with lomitapide suppresses colorectal tumorigenesis through the activation of AMPK/Beclin1-mediated autophagy. , 2021, Cancer letters.
[11] W. Xu,et al. Maprotiline Suppresses Cholesterol Biosynthesis and Hepatocellular Carcinoma Progression Through Direct Targeting of CRABP1 , 2021, Frontiers in Pharmacology.
[12] E. De Smaele,et al. The emerging role of the KCTD proteins in cancer , 2021, Cell communication and signaling : CCS.
[13] Q. Zhan,et al. Long Noncoding RNA VESTAR Regulates Lymphangiogenesis and Lymph Node Metastasis of Esophageal Squamous Cell Carcinoma by Enhancing VEGFC mRNA Stability , 2021, Cancer Research.
[14] W. Xue,et al. ATAD2 interacts with C/EBPβ to promote esophageal squamous cell carcinoma metastasis via TGF-β1/Smad3 signaling , 2021, Journal of Experimental & Clinical Cancer Research.
[15] P. Nisticò,et al. Fibronectin as a multiregulatory molecule crucial in tumor matrisome: from structural and functional features to clinical practice in oncology , 2021, Journal of experimental & clinical cancer research : CR.
[16] Qing‐Yu He,et al. Genome-wide identification of key regulatory lncRNAs in esophageal cancer metastasis , 2021, Signal Transduction and Targeted Therapy.
[17] Qing‐Yu He,et al. Identification of miR-515-3p and its targets, vimentin and MMP3, as a key regulatory mechanism in esophageal cancer metastasis: functional and clinical significance , 2020, Signal Transduction and Targeted Therapy.
[18] Qing‐Yu He,et al. Advances in targeted therapy for esophageal cancer , 2020, Signal Transduction and Targeted Therapy.
[19] Qing‐Yu He,et al. Echinatin suppresses esophageal cancer tumor growth and invasion through inducing AKT/mTOR-dependent autophagy and apoptosis , 2020, Cell Death & Disease.
[20] D. Tuveson,et al. DIVERSITY AND BIOLOGY OF CANCER-ASSOCIATED FIBROBLASTS. , 2020, Physiological reviews.
[21] Namju Kang,et al. The Role of Ca2+-NFATc1 Signaling and Its Modulation on Osteoclastogenesis , 2020, International journal of molecular sciences.
[22] L. Roshangar,et al. Tumor microenvironment complexity and therapeutic implications at a glance , 2020, Cell Communication and Signaling.
[23] Hyun-Cheol Lee,et al. Intracellular sensing of viral genomes and viral evasion , 2019, Experimental & Molecular Medicine.
[24] Zhihua Liu,et al. SERPINE2 promotes esophageal squamous cell carcinoma metastasis by activating BMP4. , 2019, Cancer letters.
[25] J. Rutka,et al. Role of Cl- channels in primary brain tumour. , 2019, Cell calcium.
[26] Qing‐Yu He,et al. Adefovir dipivoxil sensitizes colon cancer cells to vemurafenib by disrupting the KCTD12-CDK1 interaction. , 2019, Cancer letters.
[27] Chuan He,et al. RETRACTED ARTICLE: RNA m6A methylation regulates the epithelial mesenchymal transition of cancer cells and translation of Snail , 2019, Nature Communications.
[28] A. Son,et al. TRPM3/TRPV4 regulates Ca2+-mediated RANKL/NFATc1 expression in osteoblasts , 2018, Journal of molecular endocrinology.
[29] Giuseppe Curigliano,et al. Targeting the microenvironment in solid tumors. , 2018, Cancer treatment reviews.
[30] N. Prevarskaya,et al. Ion Channels in Cancer: Are Cancer Hallmarks Oncochannelopathies? , 2018, Physiological reviews.
[31] E. Li,et al. Cancer cell-secreted IGF2 instigates fibroblasts and bone marrow-derived vascular progenitor cells to promote cancer progression , 2017, Nature Communications.
[32] R. Kalluri. The biology and function of fibroblasts in cancer , 2016, Nature Reviews Cancer.
[33] H. Dirr,et al. A Lys-Trp cation-π interaction mediates the dimerization and function of the chloride intracellular channel protein 1 transmembrane domain. , 2014, Biochemistry.
[34] Yaqian Xiang,et al. The KCTD family of proteins: structure, function, disease relevance , 2013, Cell & Bioscience.
[35] L. Zardi,et al. Fibronectin as target for tumor therapy , 2006, International journal of cancer.
[36] W. D. Fairlie,et al. The Intracellular Chloride Ion Channel Protein CLIC1 Undergoes a Redox-controlled Structural Transition* , 2004, Journal of Biological Chemistry.
[37] M. Yi,et al. A fibronectin fragment inhibits tumor growth, angiogenesis, and metastasis. , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[38] L G Griffith,et al. Biophysical integration of effects of epidermal growth factor and fibronectin on fibroblast migration. , 1999, Biophysical journal.
[39] R. Crystal,et al. Role of fibronectin as a growth factor for fibroblasts , 1983, The Journal of cell biology.