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XB-GENEPAGE-5856212
Papers associated with slc38a5
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Perturbation of astroglial Slc38 glutamine transporters by NH4 + contributes to neurophysiologic manifestations in acute liver failure., Hamdani EH, Popek M, Frontczak-Baniewicz M, Utheim TP, Albrecht J, Zielińska M, Chaudhry FA., FASEB J. July 1, 2021; 35 (7): e21588. |
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Specific transport of 3-fluoro-l-α-methyl-tyrosine by LAT1 explains its specificity to malignant tumors in imaging., Wei L, Tominaga H, Ohgaki R, Wiriyasermkul P, Hagiwara K, Okuda S, Kaira K, Oriuchi N, Nagamori S, Kanai Y., Cancer Sci. March 1, 2016; 107 (3): 347-52. |
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Transport of L-glutamine, L-alanine, L-arginine and L-histidine by the neuron-specific Slc38a8 (SNAT8) in CNS., Hägglund MGA, Hellsten SV, Bagchi S, Philippot G, Löfqvist E, Nilsson VCO, Almkvist I, Karlsson E, Sreedharan S, Tafreshiha A, Fredriksson R., J Mol Biol. March 27, 2015; 427 (6 Pt B): 1495-1512. |
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The system N transporter SN2 doubles as a transmitter precursor furnisher and a potential regulator of NMDA receptors., Hamdani el H, Gudbrandsen M, Bjørkmo M, Chaudhry FA., Glia. November 1, 2012; 60 (11): 1671-83. |
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Evidence for allosteric regulation of pH-sensitive System A (SNAT2) and System N (SNAT5) amino acid transporter activity involving a conserved histidine residue., Baird FE, Pinilla-Tenas JJ, Ogilvie WL, Ganapathy V, Hundal HS, Taylor PM., Biochem J. July 15, 2006; 397 (2): 369-75. |
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Bidirectional substrate fluxes through the system N (SNAT5) glutamine transporter may determine net glutamine flux in rat liver., Baird FE, Beattie KJ, Hyde AR, Ganapathy V, Rennie MJ, Taylor PM., J Physiol. September 1, 2004; 559 (Pt 2): 367-81. |
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