Cite

Alimohammadi E, Bagheri SR, Salehi AS, Rizevandi P, Rezaie Z, Abdi A. Prognostic factors in patients with glioblastoma multiforme: focus on the pathologic variants. Acta Neurol Belg 2019.10.1007/s13760-019-01171-x31222512Search in Google Scholar

Arriza JL, Weinberger C, Cerelli G, Glaser TM, Handelin BL, Housman DE, Evans RM. Cloning of human mineralocorticoid receptor complementary DNA: structural and functional kinship with the glucocorticoid receptor. Science 237, 268–275, 1987.10.1126/science.30377033037703Search in Google Scholar

Auf G, Jabouille A, Guerit S, Pineau R, Delugin M, Bouchecareilh M, Favereaux A, Maitre M, Gaiser T, von Deimling A, Czabanka M, Vajkoczy P, Chevet E, Bikfalvi A, Moenner M. A shift from an angiogenic to invasive phenotype induced in malignant glioma by inhibition of the unfolded protein response sensor IRE1. Proc Natl Acad Sci U S A 107, 15553–15558, 2010.10.1073/pnas.0914072107293260020702765Search in Google Scholar

Auf G, Jabouille A, Delugin M, Guerit S, Pineau R, North S, Platonova N, Maitre M, Favereaux A, Vajkoczy P, Seno M, Bikfalvi A, Minchenko D, Minchenko O, Moenner M. High epiregulin expression in human U87 glioma cells relies on IRE1alpha and promotes autocrine growth through EGF receptor. BMC Cancer 13, 597, 2013.10.1186/1471-2407-13-597387867024330607Search in Google Scholar

Awale S, Lu J, Kalauni SK, Kurashima Y, Tezuka Y, Kadota S, Esumi H. Identification of arctigenin as an antitumor agent having the ability to eliminate the tolerance of cancer cells to nutrient starvation. Cancer Res 66, 1751–1757, 2006a.10.1158/0008-5472.CAN-05-31431645223516452235Open DOISearch in Google Scholar

Awale S, Nakashima EM, Kalauni SK, Tezuka Y, Kurashima Y, Lu J, Esumi H, Kadota S. Angelmarin, a novel anti-cancer agent able to eliminate the tolerance of cancer cells to nutrient starvation. Bioorg Med Chem Lett 16, 581–583, 2006b.10.1016/j.bmcl.2005.10.0461628886516288865Open DOISearch in Google Scholar

Aziz MH, Chen X, Zhang Q, DeFrain C, Osland J, Luo Y, Shi X, Yuan R. Suppressing NRIP1 inhibits growth of breast cancer cells in vitro and in vivo. Oncotarget 6, 39714–39724, 2015.10.18632/oncotarget.5356474185726492163Search in Google Scholar

Bochkov VN, Philippova M, Oskolkova O, Kadl A, Furnkranz A, Karabeg E, Breuss J, Minchenko OH, Mechtcheriakova D, Hohensinner P, Rychli K, Wojta J, Resink T, Binder BR, Leitinger N. Oxidized phospholipids stimulate angiogenesis via induction of VEGF, IL-8, COX-2 and ADAMTS-1 metalloprotease, implicating a novel role for lipid oxidation in progression and destabilization of atherosclerotic lesions. Circ Res 99, 900–908, 2006.10.1161/01.RES.0000245485.04489.ee16973904Search in Google Scholar

Bravo R, Parra V, Gatica D, Rodriguez AE, Torrealba N, Paredes F, Wang ZV, Zorzano A, Hill JA, Jaimovich E, Quest AF, Lavandero S. Endoplasmic reticulum and the unfolded protein response: dynamics and metabolic integration. Int Rev Cell Mol Biol 301, 215–290, 2013.10.1016/B978-0-12-407704-1.00005-1366655723317820Search in Google Scholar

Cao H, Xu Z, Wang J, Cigliano A, Pilo MG, Ribback S, Zhang S, Qiao Y, Che L, Pascale RM, Calvisi DF, Chen X. Functional role of SGK3 in PI3K/Pten driven liver tumor development. BMC Cancer 19, 343, 2019.10.1186/s12885-019-5551-2645882930975125Open DOISearch in Google Scholar

Chen Y, Sun Z, Qi M, Wang X, Zhang W, Chen C, Liu J, Zhao W. INPP4B restrains cell proliferation and metastasis via regulation of the PI3K/AKT/SGK pathway. J Cell Mol Med 22, 2935–2943, 2018.10.1111/jcmm.13595590810729516642Open DOISearch in Google Scholar

Chevet E, Hetz C, Samali A. Endoplasmic reticulum stress-activated cell reprogramming in oncogenesis. Cancer Discov 5, 586–597, 2015.10.1158/2159-8290.CD-14-149025977222Search in Google Scholar

Choi EJ, Kim MS, Song SY, Yoo NJ, Lee SH. Low Frequent mutation of ARHGAP35, a candidate tumor suppressor gene, in gastric and colorectal cancers. Pathol Oncol Res 24, 175–176, 2018.10.1007/s12253-017-0208-428176259Open DOISearch in Google Scholar

Colombo SL, Palacios-Callender M, Frakich N, Carcamo S, Kovacs I, Tudzarova S, Moncada S. Molecular basis for the differential use of glucose and glutamine in cell proliferation as revealed by synchronized HeLa cells. Proc Natl Acad Sci USA 108, 21069–21074, 2011.10.1073/pnas.1117500108324854322106309Search in Google Scholar

Dasgupta S, Putluri N, Long W, Zhang B, Wang J, Kaushik AK, Arnold JM, Bhowmik SK, Stashi E, Brennan CA, Rajapakshe K, Coarfa C, Mitsiades N, Ittmann MM, Chinnaiyan AM, Sreekumar A, O’Malley BW. Coactivator SRC-2-dependent metabolic reprogramming mediates prostate cancer survival and metastasis. J Clin Invest 125, 1174–1188, 2015.10.1172/JCI76029436226025664849Search in Google Scholar

de Guia RM, Herzig S. How do glucocorticoids regulate lipid metabolism? Adv Exp Med Biol 872, 127–144, 2015.10.1007/978-1-4939-2895-8_626215993Search in Google Scholar

Dejeans N, Barroso K, Fernandez-Zapico ME, Samali A, Chevet E. Novel roles of the unfolded protein response in the control of tumor development and aggressiveness. Semin Cancer Biol 33, 67–73, 2015.10.1016/j.semcancer.2015.04.00725953433Search in Google Scholar

Drogat B, Auguste P, Nguyen DT, Bouchecareilh M, Pineau R, Nalbantoglu J, Kaufman RJ, Chevet E, Bikfalvi A, Moenner M. IRE1 signaling is essential for ischemia-induced vascular endothelial growth factor-A expression and contributes to angiogenesis and tumor growth in vivo. Cancer Res 67, 6700–6707, 2007.10.1158/0008-5472.CAN-06-323517638880Search in Google Scholar

Dvorak Z, Vrzal R, Pavek P, Ulrichova J. An evidence for regulatory cross-talk between aryl hydrocarbon receptor and glucocorticoid receptor in HepG2 cells. Physiol Res 57, 427–435, 2008.1755287110.33549/A10.33549/physiolres.931090Search in Google Scholar

Fan XR, Zhang ZY, Wang RH, Li Y, Mao QZ. MiR-376a functions as tumor suppressor by targeting SGK3 in renal cell carcinoma. Eur Rev Med Pharmacol Sci 23, 3726–3732, 2019.Search in Google Scholar

Guo H, Nan Y, Zhen Y, Zhang Y, Guo L, Yu K, Huang Q, Zhong Y. miRNA-451 inhibits glioma cell proliferation and invasion by downregulating glucose transporter 1. Tumour Biol 37, 13751–13761, 2016.10.1007/s13277-016-5219-327476171Search in Google Scholar

Huang Y, Zhou J, Huang Y, He J, Wang Y, Yang C, Liu D, Zhang L, He F. SARI, a novel target gene of glucocorticoid receptor, plays an important role in dexamethasone-mediated killing of B lymphoma cells. Cancer Lett 373, 57–66, 2016.10.1016/j.canlet.2016.01.03426808579Search in Google Scholar

Huber AL, Lebeau J, Guillaumot P, Petrilli V, Malek M, Chilloux J, Fauvet F, Payen L, Kfoury A, Renno T, Chevet E, Manie SN. p58(IPK)-mediated attenuation of the proapoptotic PERK-CHOP pathway allows malignant progression under low glucose. Mol Cell 49, 1049–1059, 2013.10.1016/j.molcel.2013.01.00923395000Search in Google Scholar

Iurlaro R, Puschel F, Leon-Annicchiarico CL, O’Connor H, Martin SJ, Palou-Gramon D, Lucendo E, Munoz-Pinedo C. Glucose deprivation induces ATF4-mediated apoptosis through TRAIL death receptors. Mol Cell Biol 37, e00479–e00496, 2017.10.1128/MCB.00479-16547754928242652Search in Google Scholar

Jalaguier S, Teyssier C, Nait Achour T, Lucas A, Bonnet S, Rodriguez C, Elarouci N, Lapierre M, Cavailles V. Complex regulation of LCoR signaling in breast cancer cells. Oncogene 36, 4790–4801, 2017.2841430810.1038/onc.2017.97556284928414308Search in Google Scholar

Khan SH, Ling J, Kumar R. TBP binding-induced folding of the glucocorticoid receptor AF1 domain facilitates its interaction with steroid receptor coactivator-1. PLoS One 6, E21939, 2011.10.1371/journal.pone.0021939313138521760925Search in Google Scholar

Kim IK, Kim BS, Koh CH, Seok JW, Park JS, Shin KS, Bae EA, Lee GE, Jeon H, Cho J, Jung Y, Han D, Kwon BS, Lee HY, Chung Y, Kang CY. Glucocorticoid-induced tumor necrosis factor receptor-related protein co-stimulation facilitates tumor regression by inducing IL-9-producing helper T cells. Nat Med 21, 1010–1017, 2015.2628011910.1038/nm.392226280119Search in Google Scholar

Kubli SP, Bassi C, Roux C, Wakeham A, Gobl C, Zhou W, Jafari SM, Snow B, Jones L, Palomero L, Thu KL, Cassetta L, Soong D, Berger T, Ramachandran P, Baniasadi SP, Duncan G, Lindzen M, Yarden Y, Herranz C, Lazaro C, Chu MF, Haight J, Tinto P, Silvester J, Cescon DW, Petit A, Pettersson S, Pollard JW, Mak TW, Pujana MA, Cappello P, Gorrini C. AhR controls redox homeostasis and shapes the tumor microenvironment in BRCA1-associated breast cancer. Proc Natl Acad Sci USA 116, 3604–3613, 2019.10.1073/pnas.1815126116639754130733286Search in Google Scholar

Le Billan F, Amazit L, Bleakley K, Xue QY, Pussard E, Lhadj C, Kolkhof P, Viengchareun S, Fagart J, Lombes M. Corticosteroid receptors adopt distinct cyclical transcriptional signatures. FASEB J 32, 5626–5639, 2018.10.1096/fj.201800391RR29733691Open DOISearch in Google Scholar

Li MD, Ruan HB, Singh JP, Zhao L, Zhao T, Azarhoush S, Wu J, Evans RM, Yang X. O-GlcNAc transferase is involved in glucocorticoid receptor-mediated transrepression. J Biol Chem 287, 12904–12912, 2012.10.1074/jbc.M111.303792333997022371499Search in Google Scholar

Li S, Zhuang Z, Wu T, Lin JC, Liu ZX, Zhou LF, Dai T, Lu L, Ju HQ. Nicotinamide nucleotide transhydrogenase-mediated redox homeostasis promotes tumor growth and metastasis in gastric cancer. Redox Biol 18, 246–255, 2018a.10.1016/j.redox.2018.07.017607956930059901Search in Google Scholar

Li J, Zhou Q, Yang T, Li Y, Zhang Y, Wang J, Jiao Z. SGK1 inhibits PM2.5-induced apoptosis and oxidative stress in human lung alveolar epithelial A549cells. Biochem Biophys Res Commun 496, 1291–1295, 2018b.10.1016/j.bbrc.2018.02.00229412164Search in Google Scholar

Liang YN, Tang YL, Ke ZY, Chen YQ, Luo XQ, Zhang H, Huang LB. MiR-124 contributes to glucocorticoid resistance in acute lymphoblastic leukemia by promoting proliferation, inhibiting apoptosis and targeting the glucocorticoid receptor. J Steroid Biochem Mol Biol 172, 62–68, 2017.10.1016/j.jsbmb.2017.05.01428578002Search in Google Scholar

Liu H, Li C, Shen C, Yin F, Wang K, Liu Y, Zheng B, Zhang W, Hou X, Chen X, Wu J, Wang X, Zhong C, Zhang J, Shi H, Ai J, Zhao S. MiR-212-3p inhibits glioblastoma cell proliferation by targeting SGK3. J Neurooncol 122, 431–439, 2015.10.1007/s11060-015-1736-y25720694Search in Google Scholar

Ma X, Zhang L, Song J, Nguyen E, Lee RS, Rodgers SJ, Li F, Huang C, Schittenhelm RB, Chan H, Chheang C, Wu J, Brown KK, Mitchell CA, Simpson KJ, Daly RJ. Characterization of the Src-regulated kinome identifies SGK1 as a key mediator of Src-induced transformation. Nat Commun 10, 296, 2019.10.1038/s41467-018-08154-1633686730655532Search in Google Scholar

Manie SN, Lebeau J, Chevet E. Cellular mechanisms of endoplasmic reticulum stress signaling in health and disease. 3. Orchestrating the unfolded protein response in oncogenesis: an update. Am J Physiol Cell Physiol 307, C901–C907, 2014.10.1152/ajpcell.00292.201425186011Search in Google Scholar

Meimaridou E, Kowalczyk J, Guasti L, Hughes CR, Wagner F, Frommolt P, Nurnberg P, Mann NP, Banerjee R, Saka HN, Chapple JP, King PJ, Clark AJ, Metherell LA. Mutations in NNT encoding nicotinamide nucleotide transhydrogenase cause familial glucocorticoid deficiency. Nat Genet 44, 740–742, 2012.2263475310.1038/ng.2299338689622634753Search in Google Scholar

Meimaridou E, Goldsworthy M, Chortis V, Fragouli E, Foster PA, Arlt W, Cox R, Metherell LA. NNT is a key regulator of adrenal redox homeostasis and steroidogenesis in male mice. J Endocrinol 236, 13–28, 2018.10.1530/JOE-16-0638574455929046340Search in Google Scholar

Minchenko AG, Germanyuk YL. Effect of hydrocortisone on the expression of mitochondrial genes in the liver of normal and alloxan diabetic rats. Endocrinol Exper 18, 3–18, 1984.6201346Search in Google Scholar

Minchenko AG. Effect of hydrocortisone on biosynthesis of mitochondrial and cytoplasmic RNA in liver of adrenal-ectomized rats. Endocrinol Exper 22, 75–86, 1988.Search in Google Scholar

Minchenko AG, Tronjko ND. Subcellular distribution of 3H-hydrocortisone and its metabolites in the liver and kidneys of normal and alloxan diabetic rats. Endocrinol Exper 22, 19–28, 1988.3259502Search in Google Scholar

Minchenko OH, Kharkova AP, Bakalets TV, Kryvdiuk IV. Endoplasmic reticulum stress, its sensor and signaling systems and the role in regulation of gene expressions at malignant tumor growth and hypoxia. Ukr Biokhim Zh 85, 5–16, 2013.10.15407/ubj85.05.00524479318Search in Google Scholar

Minchenko DO, Danilovskyi SV, Kryvdiuk IV, Bakalets TV, Lypova NM, Karbovskyi LL, Minchenko OH. Inhibition of ERN1 modifies the hypoxic regulation of the expression of TP53-related genes in U87 glioma cells. Endoplasm Reticul Stress Dis 1, 18–26, 2014.10.2478/ersc-2014-0001Search in Google Scholar

Minchenko DO, Kharkova AP, Tsymbal DO, Karbovskyi LL, Minchenko OH. Expression of insulin-like growth factor binding protein genes and its hypoxic regulation in U87 glioma cells depends on ERN1 mediated signaling pathway of endoplasmic reticulum stress. Endocr Regul 49, 73–83, 2015a.10.4149/endo_2015_02_7325960008Search in Google Scholar

Minchenko DO, Kharkova AP, Tsymbal DO, Karbovskyi LL, Minchenko OH. IRE1 inhibition affects the expression of insulin-like growth factor binding protein genes and modifies its sensitivity to glucose deprivation in U87 glioma cells. Endocr Regul 49, 185–197, 2015b.10.4149/endo_2015_04_18526494037Search in Google Scholar

Minchenko OH, Tsymbal DO, Moenner M, Minchenko DO, Kovalevska OV, Lypova NM. Inhibition of the endoribonuclease of ERN1 signaling enzyme affects the expression of proliferation-related genes in U87 glioma cells. Endoplasm Reticul Stress Dis 2, 18–29, 2015c.10.1515/ersc-2015-0002Search in Google Scholar

Minchenko DO, Tsymbal DO, Davydov VV, Minchenko OH. Expression of genes encoding IGF1, IGF2, and IGFBPs in blood of obese adolescents with insulin resistance. Endocr Reg 53, 34–45, 2019.10.2478/enr-2019-000531517621Search in Google Scholar

Mitsuishi Y, Shibata H, Kurihara I, Kobayashi S, Yokota K, Murai-Takeda A, Hayashi T, Jo R, Nakamura T, Morisaki M, Itoh H. Epidermal growth factor receptor/extracellular signal-regulated kinase pathway enhances mineralocorticoid receptor transcriptional activity through protein stabilization. Mol Cell Endocrinol 473, 89–99, 2018.10.1016/j.mce.2018.01.00729391190Search in Google Scholar

Moenner M, Pluquet O, Bouchecareilh M, Chevet E. Integrated endoplasmic reticulum stress responses in cancer. Cancer Res 67, 10631–10634, 2007.10.1158/0008-5472.CAN-07-170518006802Search in Google Scholar

Muller K, Sixou S, Kuhn C, Jalaguier S, Mayr D, Ditsch N, Weissenbacher T, Harbeck N, Mahner S, Cavailles V, Jeschke U. Prognostic relevance of RIP140 and ERbeta expression in unifocal versus multifocal breast cancers: a preliminary report. Int J Mol Sci 20, E418, 2019.10.3390/ijms20020418635922930669416Open DOISearch in Google Scholar

Nayak L, Reardon DA. High-grade gliomas. Continuum (Minneap Minn) 23, 1548–1563, 2017.10.1212/CON.000000000000055429200110Search in Google Scholar

Onodera K, Sakurada A, Notsuda H, Watanabe T, Matsuda Y, Noda M, Endo C, Okada Y. Growth inhibition of KRAS and EGFR mutant lung adenocarcinoma by cosuppression of STAT3 and the SRC/ARHGAP35 axis. Oncol Rep 40, 1761–1768, 2018.10.3892/or.2018.653630015929Search in Google Scholar

Organ SL, Hai J, Radulovich N, Marshall CB, Leung L, Sasazuki T, Shirasawa S, Zhu CQ, Navab R, Ikura M, Tsao MS. p120RasGAP is a mediator of rho pathway activation and tumorigenicity in the DLD1 colorectal cancer cell line. PLoS One 9, e86103, 2014.10.1371/journal.pone.0086103389762224465899Search in Google Scholar

Psarra AM, Sekeris CE. Glucocorticoids induce mitochondrial gene transcription in HepG2 cells: role of the mitochondrial glucocorticoid receptor. Biochim Biophys Acta 1813, 1814–1821, 2011.10.1016/j.bbamcr.2011.05.01421664385Search in Google Scholar

Pufall MA. Glucocorticoids and cancer. Adv Exp Med Biol 872, 315–333, 2015.10.1007/978-1-4939-2895-8_14554609926216001Search in Google Scholar

Qi L, Ding Y. Construction of key signal regulatory network in metastatic colorectal cancer. Oncotarget 9, 6086–6094, 2017.2946405710.18632/oncotarget.23710581419729464057Search in Google Scholar

Teramoto K, Katoh H. The cystine/glutamate antiporter xCT is a key regulator of EphA2 S897 phosphorylation under glucose-limited conditions. Cell Signal 62, 109329, 2019.10.1016/j.cellsig.2019.05.01431152846Search in Google Scholar

Thomas AL, Coarfa C, Qian J, Wilkerson JJ, Rajapakshe K, Krett NL, Gunaratne PH, Rosen ST. Identification of potential glucocorticoid receptor therapeutic targets in multiple myeloma. Nucl Recept Signal 13, e006, 2015.10.1621/nrs.13006469362926715915Search in Google Scholar

Tsymbal DO, Minchenko DO, Riabovol OO, Ratushna OO, Minchenko OH. IRE1 knockdown modifies glucose and glutamine deprivation effects on the expression of proliferation related genes in U87 glioma cells. Biotechnologia Acta 9, 26–37, 2016.10.15407/biotech9.01.026Search in Google Scholar

Vonlanthen J, Okoniewski MJ, Menigatti M, Cattaneo E, Pellegrini-Ochsner D, Haider R, Jiricny J, Staiano T, Buffoli F, Marra G. A comprehensive look at transcription factor gene expression changes in colorectal adenomas. BMC Cancer 14, 46, 2014.10.1186/1471-2407-14-46407800524472434Open DOISearch in Google Scholar

Weinberg-Shukron A, Abu-Libdeh A, Zhadeh F, Carmel L, Kogot-Levin A, Kamal L, Kanaan M, Zeligson S, Renbaum P, Levy-Lahad E, Zangen D. Combined mineralocorticoid and glucocorticoid deficiency is caused by a novel founder nicotinamide nucleotide transhydrogenase mutation that alters mitochondrial morphology and increases oxidative stress. J Med Genet 52, 636–641, 2015.10.1136/jmedgenet-2015-10307826070314Search in Google Scholar

Xiaobo Y, Qiang L, Xiong Q, Zheng R, Jianhua Z, Zhifeng L, Yijiang S, Zheng J. Serum and glucocorticoid kinase 1 promoted the growth and migration of non-small cell lung cancer cells. Gene 576, 339–346, 2016.10.1016/j.gene.2015.10.07226548813Search in Google Scholar

Yalcin A, Clem BF, Imbert-Fernandez Y, Ozcan SC, Peker S, O’Neal J, Klarer AC, Clem AL, Telang S, Chesney J. 6-Phosphofructo-2-kinase (PFKFB3) promotes cell cycle progression and suppresses apoptosis via Cdk1-mediated phosphorylation of p27. Cell Death Dis 5, e1337, 2014.Yang C, Ma X, Guan G, Liu H, Yang Y, Niu Q, Wu Z, Jiang Y, Bian C, Zang Y, Zhuang L. MicroRNA-766 promotes cancer progression by targeting NR3C2 in hepatocellular carcinoma. FASEB J 33, 1456–1467, 2019.10.1038/cddis.2014.292412308625032860Search in Google Scholar

Zhao J, Xu H, He M, Wu Y. Glucocorticoid receptor DNA binding factor 1 expression and osteosarcoma prognosis. Tumour Biol 35, 12449–12458, 2014.10.1007/s13277-014-2563-z25185653Search in Google Scholar

Zhao S, Cai J, Li J, Bao G, Li D, Li Y, Zhai X, Jiang C, Fan L. Bioinformatic profiling identifies a glucose-related risk signature for the malignancy of glioma and the survival of patients. Mol Neurobiol 54, 8203–8210, 2017.2790067910.1007/s12035-016-0314-427900679Search in Google Scholar

eISSN:
1336-0329
Idioma:
Inglés