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    Slc38a1 solute carrier family 38, member 1 [ Mus musculus (house mouse) ]

    Gene ID: 105727, updated on 17-Aug-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    Slc38a1 Conveys Astroglia-Derived Glutamine into GABAergic Interneurons for Neurotransmitter GABA Synthesis.

    Slc38a1 Conveys Astroglia-Derived Glutamine into GABAergic Interneurons for Neurotransmitter GABA Synthesis.
    Qureshi T, Bjørkmo M, Nordengen K, Gundersen V, Utheim TP, Watne LO, Storm-Mathisen J, Hassel B, Chaudhry FA., Free PMC Article

    03/6/2021
    The Glutamine Transporter Slc38a1 Regulates GABAergic Neurotransmission and Synaptic Plasticity.

    The Glutamine Transporter Slc38a1 Regulates GABAergic Neurotransmission and Synaptic Plasticity.
    Qureshi T, Sørensen C, Berghuis P, Jensen V, Dobszay MB, Farkas T, Dalen KT, Guo C, Hassel B, Utheim TP, Hvalby Ø, Hafting T, Harkany T, Fyhn M, Chaudhry FA., Free PMC Article

    11/21/2020
    interacts with voltage-gated CaV2.2 calcium channels

    Four novel interaction partners demonstrate diverse modulatory effects on voltage-gated Ca(V)2.2 Ca(2+) channels.
    Mallmann R, Ondacova K, Moravcikova L, Jurkovicova-Tarabova B, Pavlovicova M, Moravcik R, Lichvarova L, Kominkova V, Klugbauer N, Lacinova L.

    05/9/2020
    These results demonstrate that SNAT1 promoted ischemic brain damage via mTOR-autophagy system.

    Inhibition of the glutamine transporter SNAT1 confers neuroprotection in mice by modulating the mTOR-autophagy system.
    Yamada D, Kawabe K, Tosa I, Tsukamoto S, Nakazato R, Kou M, Fujikawa K, Nakamura S, Ono M, Oohashi T, Kaneko M, Go S, Hinoi E, Yoneda Y, Takarada T., Free PMC Article

    04/18/2020
    The amino acid transporter gene Slc38a1 appears to be a novel gene responsive to hypoxic stress in a manner dependent on HIF-1alpha in brown adipocytes. In addition to in vitro studies, we showed that the Slc38a1 expression was enhanced in the brown adipose tissue of obesity model mice in vivo.

    Hypoxic Stress Upregulates the Expression of Slc38a1 in Brown Adipocytes via Hypoxia-Inducible Factor-1α.
    Horie T, Fukasawa K, Iezaki T, Park G, Onishi Y, Ozaki K, Kanayama T, Hiraiwa M, Kitaguchi Y, Kaneda K, Hinoi E.

    08/18/2018
    Hence, pro-degenerative MAPK signaling functions upstream of SARM1 by limiting the levels of the essential axonal survival factor NMNAT2 to promote injury-dependent SARM1 activation.

    MAPK signaling promotes axonal degeneration by speeding the turnover of the axonal maintenance factor NMNAT2.
    Walker LJ, Summers DW, Sasaki Y, Brace EJ, Milbrandt J, DiAntonio A., Free PMC Article

    02/10/2018
    Changes in transporter expression likely reflect different amino acid requirements during development. Findings include the differential expression of SNAT1 in the inner and outer cells of the compacted morula and nuclear localisation of SNAT2 in the trophectoderm and placental lineages.

    Regulation of amino acid transporters in pluripotent cell populations in the embryo and in culture; novel roles for sodium-coupled neutral amino acid transporters.
    Tan BSN, Rathjen PD, Harvey AJ, Gardner DK, Rathjen J.

    12/30/2017
    Overexpression of X-box binding protein-1 led to a marked increase in luciferase activity in P19 cells transfected with the Slc38a1 reporter plasmid. These results suggest that theanine accelerates cellular proliferation and subsequent neuronal specification through a mechanism relevant to upregulation of Slc38a1 gene in undifferentiated neural progenitor cells

    Upregulation of Slc38a1 Gene Along with Promotion of Neurosphere Growth and Subsequent Neuronal Specification in Undifferentiated Neural Progenitor Cells Exposed to Theanine.
    Takarada T, Ogura M, Nakamichi N, Kakuda T, Nakazato R, Kokubo H, Ikeno S, Nakamura S, Kutsukake T, Hinoi E, Yoneda Y.

    11/5/2016
    We found that MeCP2 acts as a microglia-specific transcriptional repressor of

    Dysregulation of glutamine transporter SNAT1 in Rett syndrome microglia: a mechanism for mitochondrial dysfunction and neurotoxicity.
    Jin LW, Horiuchi M, Wulff H, Liu XB, Cortopassi GA, Erickson JD, Maezawa I., Free PMC Article

    04/18/2015
    GlnT would promote both proliferation and neuronal differentiation through a mechanism relevant to the upregulation of particular proneural genes in undifferentiated P19 cells.

    Promotion of both proliferation and neuronal differentiation in pluripotent P19 cells with stable overexpression of the glutamine transporter slc38a1.
    Ogura M, Kakuda T, Takarada T, Nakamichi N, Fukumori R, Kim YH, Hinoi E, Yoneda Y., Free PMC Article

    04/27/2013
    Inner hair cells express glutamine transporter SLC38A1.

    Inner hair cells of mice express the glutamine transporter SAT1.
    Oguchi T, Suzuki N, Hashimoto S, Chaudhry GA, Chaudhry FA, Usami S, Ottersen OP.

    02/16/2013
    In this study, the in vivo endothelial membrane localization of the sodium-dependent glutamine transporters Snat3 (Slc38a3) and Snat1 (Slc38a1) was investigated in the mouse brain microvasculature.

    Differential axial localization along the mouse brain vascular tree of luminal sodium-dependent glutamine transporters Snat1 and Snat3.
    Ruderisch N, Virgintino D, Makrides V, Verrey F., Free PMC Article

    09/17/2011
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