ZNF8-miR-552-5p Axis Modulates ACSL4-Mediated Ferroptosis in Hepatocellular Carcinoma.
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Jie Li | Zhihua Lu | Honglong Wei | Wensheng Sun | Tao Bi | Jiahao Sun | Hao Yang
[1] L. Du,et al. CPLX2 Regulates Ferroptosis and Apoptosis Through NRF2 Pathway in Human Hepatocellular Carcinoma Cells , 2022, Applied Biochemistry and Biotechnology.
[2] Yaming Li,et al. Upstream stimulatory factor 2 inhibits erastin-induced ferroptosis in pancreatic cancer through transcriptional regulation of pyruvate kinase M2. , 2022, Biochemical pharmacology.
[3] Zhen Xu,et al. MicroRNA-147a Targets SLC40A1 to Induce Ferroptosis in Human Glioblastoma , 2022, Analytical cellular pathology.
[4] Xia Li,et al. miR-494-3p Promotes Erastin-Induced Ferroptosis by Targeting REST to Activate the Interplay between SP1 and ACSL4 in Parkinson's Disease , 2022, Oxidative medicine and cellular longevity.
[5] Jing Zhang,et al. miR-127-5p Targets JAM3 to Regulate Ferroptosis, Proliferation, and Metastasis in Malignant Meningioma Cells , 2022, Disease markers.
[6] Jing Zhao,et al. LncRNA NEAT1 promoted MPP+‑induced ferroptosis via regulating miR‑150‑5p/BAP1 pathway in SK‑N‑SH cells. , 2022, Acta neurobiologiae experimentalis.
[7] X. Zhou,et al. Overexpression of lncRNA SLC16A1-AS1 Suppresses the Growth and Metastasis of Breast Cancer via the miR-552-5p/WIF1 Signaling Pathway , 2022, Frontiers in Oncology.
[8] Zheng Zhao,et al. Ferroptosis in Cancer Progression: Role of Noncoding RNAs , 2022, International journal of biological sciences.
[9] Jinghan Zhu,et al. Structures and biological functions of zinc finger proteins and their roles in hepatocellular carcinoma , 2022, Biomarker Research.
[10] L. Yang,et al. Systemic Therapy for Hepatocellular Carcinoma: Chinese Consensus-Based Interdisciplinary Expert Statements , 2022, Liver Cancer.
[11] A. Bode,et al. ACSL family: The regulatory mechanisms and therapeutic implications in cancer. , 2021, European journal of pharmacology.
[12] Wenquan Zhou,et al. SNP-mediated lncRNA-ENTPD3-AS1 upregulation suppresses renal cell carcinoma via miR-155/HIF-1α signaling , 2021, Cell Death & Disease.
[13] Yuan Guo,et al. Molecular mechanism of cell ferroptosis and research progress in regulation of ferroptosis by noncoding RNAs in tumor cells , 2021, Cell death discovery.
[14] A. Jemal,et al. Global Cancer Statistics 2020: GLOBOCAN Estimates of Incidence and Mortality Worldwide for 36 Cancers in 185 Countries , 2021, CA: a cancer journal for clinicians.
[15] B. Stockwell,et al. Ferroptosis: mechanisms, biology and role in disease , 2021, Nature Reviews Molecular Cell Biology.
[16] E. Engleman,et al. Immune Checkpoint Inhibitors for the Treatment of Cancer: Clinical Impact and Mechanisms of Response and Resistance. , 2020, Annual review of pathology.
[17] S. Duan,et al. miR-552: an important post-transcriptional regulator that affects human cancer , 2020, Journal of Cancer.
[18] E. D. De Toni,et al. The mechanisms of sorafenib resistance in hepatocellular carcinoma: theoretical basis and therapeutic aspects , 2020, Signal Transduction and Targeted Therapy.
[19] Zhirui Zeng,et al. Linc00261 inhibits metastasis and the WNT signaling pathway of pancreatic cancer by regulating a miR-552-5p/FOXO3 axis , 2020, Oncology reports.
[20] T. Bai,et al. MicroRNA‐214‐3p enhances erastin‐induced ferroptosis by targeting ATF4 in hepatoma cells , 2020, Journal of cellular physiology.
[21] W. Dong,et al. miR-552 Regulates Liver Tumor-Initiating Cell Expansion and Sorafenib Resistance , 2020, Molecular therapy. Nucleic acids.
[22] Su Lin,et al. Pyroptosis in Liver Disease: New Insights into Disease Mechanisms , 2019, Aging and disease.
[23] B. Li,et al. Ferroptosis, a new form of cell death: opportunities and challenges in cancer , 2019, Journal of Hematology & Oncology.
[24] Jingyao Zhang,et al. MicroRNA-552 promotes hepatocellular carcinoma progression by downregulating WIF1 , 2018, International journal of molecular medicine.
[25] B. Stockwell,et al. Ferroptosis: A Regulated Cell Death Nexus Linking Metabolism, Redox Biology, and Disease , 2017, Cell.
[26] G. Latunde-Dada,et al. Ferroptosis: Role of lipid peroxidation, iron and ferritinophagy. , 2017, Biochimica et biophysica acta. General subjects.
[27] Hailan Yao,et al. A dual inhibition: microRNA-552 suppresses both transcription and translation of cytochrome P450 2E1. , 2016, Biochimica et biophysica acta.
[28] W. Filipowicz,et al. Regulation of mRNA translation and stability by microRNAs. , 2010, Annual review of biochemistry.
[29] Anindya Dutta,et al. MicroRNAs in cancer. , 2009, Annual review of pathology.
[30] J. Zucman‐Rossi,et al. Hepatocellular carcinoma , 1998, Nature Reviews Disease Primers.
[31] P. Pelicci,et al. cDNA isolation, expression analysis, and chromosomal localization of two human zinc finger genes. , 1990, Genomics.
[32] A. Walch,et al. ACSL4 dictates ferroptosis sensitivity by shaping cellular lipid composition. , 2017, Nature chemical biology.
[33] J. Rehwinkel,et al. MicroRNAs silence gene expression by repressing protein expression and/or by promoting mRNA decay. , 2006, Cold Spring Harbor symposia on quantitative biology.