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ab3446 has been referenced in 18 publications.

  • Zhai S  et al. Amelioration of Lipopolysaccharide-Induced Nephrotic Proteinuria by NFAT5 Depletion Involves Suppressed NF-?B Activity. Inflammation N/A:N/A (2019). PubMed: 30826989
  • Maeoka Y  et al. Renal medullary tonicity regulates RNF183 expression in the collecting ducts via NFAT5. Biochem Biophys Res Commun 514:436-442 (2019). PubMed: 31053298
  • Arnold C  et al. Genetic ablation of NFAT5/TonEBP in smooth muscle cells impairs flow- and pressure-induced arterial remodeling in mice. FASEB J N/A:fj201801594R (2018). PubMed: 30383452
  • Johnson ZI  et al. TNF-a promotes nuclear enrichment of the transcription factor TonEBP/NFAT5 to selectively control inflammatory but not osmoregulatory responses in nucleus pulposus cells. J Biol Chem 292:17561-17575 (2017). PubMed: 28842479
  • Yu H  et al. Transcription Factor NFAT5 Promotes Glioblastoma Cell-driven Angiogenesis via SBF2-AS1/miR-338-3p-Mediated EGFL7 Expression Change. Front Mol Neurosci 10:301 (2017). PubMed: 28983240
  • Verma A  et al. Functional Incompatibility between the Generic NF-?B Motif and a Subtype-Specific Sp1III Element Drives the Formation of the HIV-1 Subtype C Viral Promoter. J Virol 90:7046-7065 (2016). PubMed: 27194770
  • Li C  et al. NFAT5 participates in seawater inhalation-induced acute lung injury via modulation of NF-?B activity. Mol Med Rep 14:5033-5040 (2016). WB, IHC-P ; Rat . PubMed: 27779669
  • Kitterer D  et al. Activation of nuclear factor of activated T cells 5 in the peritoneal membrane of uremic patients. Am J Physiol Renal Physiol 308:F1247-58 (2015). PubMed: 25834072
  • Li JT  et al. Nuclear factor of activated T cells 5 maintained by Hotair suppression of miR-568 upregulates S100 calcium binding protein A4 to promote breast cancer metastasis. Breast Cancer Res 16:454 (2014). WB ; Human . PubMed: 25311085
  • Ueno M  et al. Fat-specific protein 27 modulates nuclear factor of activated T cells 5 and the cellular response to stress. J Lipid Res 54:734-43 (2013). PubMed: 23233732
  • Colli LM  et al. Components of the canonical and non-canonical Wnt pathways are not mis-expressed in pituitary tumors. PLoS One 8:e62424 (2013). IHC-P ; Human . PubMed: 23638078
  • Hernández-Ochoa EO  et al. Elevated extracellular glucose and uncontrolled type 1 diabetes enhance NFAT5 signaling and disrupt the transverse tubular network in mouse skeletal muscle. Exp Biol Med (Maywood) 237:1068-83 (2012). PubMed: 22966145
  • Han Q  et al. AMPK potentiates hypertonicity-induced apoptosis by suppressing NF?B/COX-2 in medullary interstitial cells. J Am Soc Nephrol 22:1897-911 (2011). PubMed: 21903993
  • Schenk LK  et al. Cyclosporin-A induced toxicity in rat renal collecting duct cells: interference with enhanced hypertonicity induced apoptosis. Cell Physiol Biochem 26:887-900 (2010). IHC-P ; Rat . PubMed: 21220920
  • Levy C  et al. Intronic miR-211 assumes the tumor suppressive function of its host gene in melanoma. Mol Cell 40:841-9 (2010). PubMed: 21109473
  • Debnath I  et al. Defining in vivo transcription factor complexes of the murine CD21 and CD23 genes. J Immunol 178:7139-50 (2007). WB, ChIP ; Mouse . PubMed: 17513763
  • Kim D  et al. Pax transactivation-domain interacting protein is required for urine concentration and osmotolerance in collecting duct epithelia. J Am Soc Nephrol 18:1458-65 (2007). Mouse . PubMed: 17429055
  • Tsai TT  et al. TonEBP/OREBP is a regulator of nucleus pulposus cell function and survival in the intervertebral disc. J Biol Chem 281:25416-24 (2006). WB, IHC-P, Immunomicroscopy ; Rat . PubMed: 16772300

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