Downregulation of the Taurine Transporter TauT During Hypo-osmotic Stress in NIH3T3 Mouse Fibroblasts
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The present work was initiated to investigate regulation of the taurine transporter TauT by reactive oxygen species (ROS) and the tonicity-responsive enhancer binding protein (TonEBP) in NIH3T3 mouse fibroblasts during acute and long-term (4 h) exposure to low-sodium/hypo-osmotic stress. Taurine influx is reduced following reduction in osmolarity, keeping the extracellular Na(+) concentration constant. TonEBP activity is unaltered, whereas TauT transcription as well as TauT activity are significantly reduced under hypo-osmotic conditions. In contrast, TonEBP activity and TauT transcription are significantly increased following hyperosmotic exposure. Swelling-induced ROS production in NIH3T3 fibroblasts is generated by NOX4 and by increasing total ROS, by either exogenous application of H(2)O(2) or overexpressing NOX4, we demonstrate that TonEBP activity and taurine influx are regulated negatively by ROS under hypo-osmotic, low-sodium conditions, whereas the TauT mRNA level is unaffected. Acute exposure to ROS reduces taurine uptake as a result of modulated TauT transport kinetics. Thus, swelling-induced ROS production could account for the reduced taurine uptake under low-sodium/hypo-osmotic conditions by direct modulation of TauT.
Taurine: A Maternally Derived Nutrient Linking Mother and Offspring.
Tochitani S Metabolites. 2022; 12(3).
PMID: 35323671 PMC: 8954275. DOI: 10.3390/metabo12030228.
Significance of taurine transporter (TauT) in homeostasis and its layers of regulation (Review).
Baliou S, Kyriakopoulos A, Goulielmaki M, Panayiotidis M, Spandidos D, Zoumpourlis V Mol Med Rep. 2020; 22(3):2163-2173.
PMID: 32705197 PMC: 7411481. DOI: 10.3892/mmr.2020.11321.
Qin X, Li C, Guo T, Chen J, Wang H, Wang Y J Exp Clin Cancer Res. 2017; 36(1):148.
PMID: 29052520 PMC: 5649064. DOI: 10.1186/s13046-017-0618-x.
Greene A, Hajduk S J Biol Chem. 2015; 291(6):3063-75.
PMID: 26645690 PMC: 4742767. DOI: 10.1074/jbc.M115.680371.
Hoffmann E, Sorensen B, Sauter D, Lambert I Channels (Austin). 2015; 9(6):380-96.
PMID: 26569161 PMC: 4850047. DOI: 10.1080/19336950.2015.1089007.