Ferroptosis: A Specific Vulnerability of RAS-Driven Cancers?
暂无分享,去创建一个
[1] Liangliang Liu,et al. SLC1A5 Prefers to Play as an Accomplice Rather Than an Opponent in Pancreatic Adenocarcinoma , 2022, Frontiers in Cell and Developmental Biology.
[2] A. Olshen,et al. Ferrous iron–activatable drug conjugate achieves potent MAPK blockade in KRAS-driven tumors , 2022, The Journal of experimental medicine.
[3] Peyman Tabnak,et al. Ferroptosis in Lung Cancer: From Molecular Mechanisms to Prognostic and Therapeutic Opportunities , 2021, Frontiers in Oncology.
[4] R. Rosell,et al. KRAS inhibitors, approved , 2021, Nature Cancer.
[5] P. Scaglioni,et al. Lipid Metabolism Regulates Oxidative Stress and Ferroptosis in RAS-Driven Cancers: A Perspective on Cancer Progression and Therapy , 2021, Frontiers in Molecular Biosciences.
[6] Litao Sun,et al. A Shortage of FTH Induces ROS and Sensitizes RAS-Proficient Neuroblastoma N2A Cells to Ferroptosis , 2021, International journal of molecular sciences.
[7] P. Jänne,et al. Acquired Resistance to KRASG12C Inhibition in Cancer. , 2021, The New England journal of medicine.
[8] Jiandong Zhang,et al. Inhibition of GPX4 or mTOR overcomes resistance to Lapatinib via promoting ferroptosis in NSCLC cells. , 2021, Biochemical and biophysical research communications.
[9] Xinglong Wang,et al. Overexpression of ferroptosis defense enzyme Gpx4 retards motor neuron disease of SOD1G93A mice , 2021, Scientific Reports.
[10] R. Govindan,et al. Sotorasib for Lung Cancers with KRAS p.G12C Mutation. , 2021, The New England journal of medicine.
[11] E. Diamandis,et al. Immunotherapy using IgE or CAR T cells for cancers expressing the tumor antigen SLC3A2 , 2021, Journal for ImmunoTherapy of Cancer.
[12] Kellen L. Olszewski,et al. DHODH-mediated ferroptosis defence is a targetable vulnerability in cancer , 2021, Nature.
[13] Na Sang,et al. DHODH and cancer: promising prospects to be explored , 2021, Cancer & metabolism.
[14] E. White,et al. SOD1 regulates ribosome biogenesis in KRAS mutant non-small cell lung cancer , 2021, Nature Communications.
[15] R. Heist,et al. Clinical acquired resistance to KRASG12C inhibition through a novel KRAS switch-II pocket mutation and polyclonal alterations converging on RAS-MAPK reactivation. , 2021, Cancer discovery.
[16] J. Minna,et al. Targeting de novo lipogenesis and the Lands cycle induces ferroptosis in KRAS-mutant lung cancer , 2021, Nature Communications.
[17] M. Doshi,et al. xCT-Driven Expression of GPX4 Determines Sensitivity of Breast Cancer Cells to Ferroptosis Inducers , 2021, Antioxidants.
[18] G. Kroemer,et al. Broadening horizons: the role of ferroptosis in cancer , 2021, Nature Reviews Clinical Oncology.
[19] M. Conrad,et al. Ferroptosis: the Good, the Bad and the Ugly , 2020, Cell Research.
[20] S. Gygi,et al. 3D Culture Models with CRISPR Screens Reveal Hyperactive NRF2 as a Prerequisite for Spheroid Formation via Regulation of Proliferation and Ferroptosis. , 2020, Molecular cell.
[21] M. Conrad,et al. The Metabolic Underpinnings of Ferroptosis. , 2020, Cell metabolism.
[22] J. Desai,et al. KRASG12C Inhibition with Sotorasib in Advanced Solid Tumors. , 2020, The New England journal of medicine.
[23] P. Clemons,et al. Plasticity of ether lipids promotes ferroptosis susceptibility and evasion , 2020, Nature.
[24] Roman K. Thomas,et al. Ferroptosis response segregates small cell lung cancer (SCLC) neuroendocrine subtypes , 2020, Nature Communications.
[25] S. Morrison,et al. Lymph protects metastasizing melanoma cells from ferroptosis , 2020, Nature.
[26] S. Dixon,et al. Dietary Lipids Induce Ferroptosis in Caenorhabditiselegans and Human Cancer Cells. , 2020, Developmental cell.
[27] Lili Yan,et al. Combinative treatment of β-elemene and cetuximab is sensitive to KRAS mutant colorectal cancer cells by inducing ferroptosis and inhibiting epithelial-mesenchymal transformation , 2020, Theranostics.
[28] P. Clemons,et al. Selective covalent targeting of GPX4 using masked nitrile-oxide electrophiles , 2020, Nature Chemical Biology.
[29] J. Gertsch,et al. The ACSL3-LPIAT1 signaling drives prostaglandin synthesis in non-small cell lung cancer , 2020, Oncogene.
[30] Konnor C. La,et al. Maintaining Iron Homeostasis Is the Key Role of Lysosomal Acidity for Cell Proliferation. , 2020, Molecular cell.
[31] G. Leprivier,et al. The impact of oncogenic RAS on redox balance and implications for cancer development , 2019, Cell Death & Disease.
[32] Edward W. Tate,et al. FSP1 is a glutathione-independent ferroptosis suppressor , 2019, Nature.
[33] J. Olzmann,et al. The CoQ oxidoreductase FSP1 acts in parallel to GPX4 to inhibit ferroptosis , 2019, Nature.
[34] Yibing Chen,et al. Dihydroartemisinin-induced unfolded protein response feedback attenuates ferroptosis via PERK/ATF4/HSPA5 pathway in glioma cells , 2019, Journal of experimental & clinical cancer research : CR.
[35] Aviad Tsherniak,et al. Extracting Biological Insights from the Project Achilles Genome-Scale CRISPR Screens in Cancer Cell Lines , 2019, bioRxiv.
[36] B. Stockwell,et al. Intercellular interaction dictates cancer cell ferroptosis via Merlin-YAP signalling , 2019, Nature.
[37] Haitao Zhu,et al. Role of GRP78 inhibiting artesunate-induced ferroptosis in KRAS mutant pancreatic cancer cells , 2019, Drug design, development and therapy.
[38] Sven Christian,et al. The novel dihydroorotate dehydrogenase (DHODH) inhibitor BAY 2402234 triggers differentiation and is effective in the treatment of myeloid malignancies , 2019, Leukemia.
[39] Emanuel J. V. Gonçalves,et al. Prioritization of cancer therapeutic targets using CRISPR–Cas9 screens , 2019, Nature.
[40] W. Chai,et al. HMGB1 regulates erastin-induced ferroptosis via RAS-JNK/p38 signaling in HL-60/NRASQ61L cells. , 2019, American journal of cancer research.
[41] Evijola Llabani,et al. Diverse compounds from pleuromutilin lead to a thioredoxin inhibitor and inducer of ferroptosis , 2019, Nature Chemistry.
[42] J. Olzmann,et al. Exogenous Monounsaturated Fatty Acids Promote a Ferroptosis-Resistant Cell State. , 2019, Cell chemical biology.
[43] B. Stockwell,et al. The Hallmarks of Ferroptosis , 2019, Annual Review of Cancer Biology.
[44] Ying Yu,et al. Erastin decreases radioresistance of NSCLC cells partially by inducing GPX4-mediated ferroptosis. , 2019, Oncology letters.
[45] M. Conrad,et al. Role of GPX4 in ferroptosis and its pharmacological implication. , 2019, Free radical biology & medicine.
[46] D. Sabatini,et al. Squalene accumulation in cholesterol auxotrophic lymphomas prevents oxidative cell death , 2019, Nature.
[47] E. Jin,et al. Bromelain effectively suppresses Kras-mutant colorectal cancer by stimulating ferroptosis , 2018, Animal cells and systems.
[48] Guojun Wu,et al. In vitro and in vivo studies of gold(I) azolate/phosphane complexes for the treatment of basal like breast cancer. , 2018, European journal of medicinal chemistry.
[49] L. Zhuang,et al. Amino acid transporter SLC7A11/xCT at the crossroads of regulating redox homeostasis and nutrient dependency of cancer , 2018, Cancer communications.
[50] I. Ellis,et al. The multifunctional solute carrier 3A2 (SLC3A2) confers a poor prognosis in the highly proliferative breast cancer subtypes , 2018, British Journal of Cancer.
[51] P. Zarrinkar,et al. Targeting KRAS Mutant Cancers with a Covalent G12C-Specific Inhibitor , 2018, Cell.
[52] Wenyan Ren,et al. miR-137 regulates ferroptosis by targeting glutamine transporter SLC1A5 in melanoma , 2018, Cell Death & Differentiation.
[53] Ann E. Sizemore,et al. Computational correction of copy-number effect improves specificity of CRISPR-Cas9 essentiality screens in cancer cells , 2017, Nature Genetics.
[54] M. Lotze,et al. HSPA5 Regulates Ferroptotic Cell Death in Cancer Cells. , 2017, Cancer research.
[55] D. James,et al. Inhibition of hepatic lipogenesis enhances liver tumorigenesis by increasing antioxidant defence and promoting cell survival , 2017, Nature Communications.
[56] Sathesh Bhat,et al. Inhibition of acetyl-CoA carboxylase suppresses fatty acid synthesis and tumor growth of non-small cell lung cancer in preclinical models , 2016, Nature Medicine.
[57] R. Deberardinis,et al. Fatty Acid Oxidation Mediated by Acyl-CoA Synthetase Long Chain 3 Is Required for Mutant KRAS Lung Tumorigenesis. , 2016, Cell reports.
[58] B. Stockwell,et al. Global Survey of Cell Death Mechanisms Reveals Metabolic Regulation of Ferroptosis , 2016, Nature chemical biology.
[59] R. Seong,et al. Transferrin receptor regulates pancreatic cancer growth by modulating mitochondrial respiration and ROS generation. , 2016, Biochemical and biophysical research communications.
[60] Kei Yamamoto,et al. Group X Secreted Phospholipase A2 Releases ω3 Polyunsaturated Fatty Acids, Suppresses Colitis, and Promotes Sperm Fertility* , 2016, The Journal of Biological Chemistry.
[61] A. Donovan,et al. Noncanonical role of transferrin receptor 1 is essential for intestinal homeostasis , 2015, Proceedings of the National Academy of Sciences.
[62] Minghui Gao,et al. Glutaminolysis and Transferrin Regulate Ferroptosis. , 2015, Molecular cell.
[63] Richard Ventura,et al. Inhibition of de novo Palmitate Synthesis by Fatty Acid Synthase Induces Apoptosis in Tumor Cells by Remodeling Cell Membranes, Inhibiting Signaling Pathways, and Reprogramming Gene Expression , 2015, EBioMedicine.
[64] G. Superti-Furga,et al. Human Haploid Cell Genetics Reveals Roles for Lipid Metabolism Genes in Nonapoptotic Cell Death , 2015, ACS chemical biology.
[65] H. Kiyonari,et al. Fatty acid remodeling by LPCAT3 enriches arachidonate in phospholipid membranes and regulates triglyceride transport , 2015, eLife.
[66] R. Coppari,et al. Diet-Induced Unresolved ER Stress Hinders KRAS-Driven Lung Tumorigenesis , 2015, Cell metabolism.
[67] S. Estrach,et al. CD98hc (SLC3A2) loss protects against ras-driven tumorigenesis by modulating integrin-mediated mechanotransduction. , 2014, Cancer research.
[68] Matthew E. Welsch,et al. Regulation of Ferroptotic Cancer Cell Death by GPX4 , 2014, Cell.
[69] M. R. Lamprecht,et al. Ferroptosis: An Iron-Dependent Form of Nonapoptotic Cell Death , 2012, Cell.
[70] R. Galassi,et al. Synthesis and characterization of azolate gold(I) phosphane complexes as thioredoxin reductase inhibiting antitumor agents. , 2012, Dalton transactions.
[71] C. Galbán,et al. Oncogenic Kras is required for both the initiation and maintenance of pancreatic cancer in mice. , 2012, The Journal of clinical investigation.
[72] Nikolaos Scarmeas,et al. The good, bad, and ugly? , 2012, Neurology.
[73] R. G. Salomon,et al. Lysophosphatidylcholine is generated by spontaneous deacylation of oxidized phospholipids. , 2011, Chemical research in toxicology.
[74] E. Kremmer,et al. System xc− and Thioredoxin Reductase 1 Cooperatively Rescue Glutathione Deficiency* , 2010, The Journal of Biological Chemistry.
[75] B. Stockwell,et al. Synthetic lethal screening identifies compounds activating iron-dependent, nonapoptotic cell death in oncogenic-RAS-harboring cancer cells. , 2008, Chemistry & biology.
[76] J. Swinnen,et al. Chemical inhibition of acetyl-CoA carboxylase induces growth arrest and cytotoxicity selectively in cancer cells. , 2007, Cancer research.
[77] B. Stockwell,et al. RAS–RAF–MEK-dependent oxidative cell death involving voltage-dependent anion channels , 2007, Nature.
[78] H. Stuhlmann,et al. CD98hc (SLC3A2) mediates integrin signaling. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[79] William C Hahn,et al. Identification of genotype-selective antitumor agents using synthetic lethal chemical screening in engineered human tumor cells. , 2003, Cancer cell.
[80] H. Varmus,et al. Induction and apoptotic regression of lung adenocarcinomas by regulation of a K-Ras transgene in the presence and absence of tumor suppressor genes. , 2001, Genes & development.
[81] Anne Bertolotti,et al. Dynamic interaction of BiP and ER stress transducers in the unfolded-protein response , 2000, Nature Cell Biology.
[82] John G. Collard,et al. Rac Downregulates Rho Activity: Reciprocal Balance between Both Gtpases Determines Cellular Morphology and Migratory Behavior , 1999 .
[83] F. Ursini,et al. Purification and characterization of phospholipid hydroperoxide glutathione peroxidase from rat testis mitochondrial membranes. , 1994, Biochimica et biophysica acta.
[84] J. Fernandez-Banet,et al. The KRASG12C Inhibitor, MRTX849, Provides Insight Toward Therapeutic Susceptibility of KRAS Mutant Cancers in Mouse Models and Patients. , 2019, Cancer discovery.
[85] Simon C Watkins,et al. Oxidized arachidonic and adrenic PEs navigate cells to ferroptosis. , 2017, Nature chemical biology.
[86] A. Walch,et al. ACSL4 dictates ferroptosis sensitivity by shaping cellular lipid composition. , 2017, Nature chemical biology.