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    SLC30A7 solute carrier family 30 member 7 [ Homo sapiens (human) ]

    Gene ID: 148867, updated on 29-Jun-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    Investigation of cuproptosis regulator-mediated modification patterns and SLC30A7 function in GBM.

    Investigation of cuproptosis regulator-mediated modification patterns and SLC30A7 function in GBM.
    Yu W, Gui S, Xie J, Peng L, Xiao J, Luo H, Tao Z, Cheng Z., Free PMC Article

    03/6/2024
    Identification of novel compound heterozygous variants in the SLC30A7 (ZNT7) gene in two French brothers with stunted growth, testicular hypoplasia and bone marrow failure.

    Identification of novel compound heterozygous variants in the SLC30A7 (ZNT7) gene in two French brothers with stunted growth, testicular hypoplasia and bone marrow failure.
    Huang L, Yang Z, Kirschke CP, Prouteau C, Copin MC, Bonneau D, Pellier I, Coutant R, Miot C, Ziegler A.

    06/8/2023
    De novo heterozygous variants in SLC30A7 are a candidate cause for Joubert syndrome.

    De novo heterozygous variants in SLC30A7 are a candidate cause for Joubert syndrome.
    Penon-Portmann M, Eldomery MK, Potocki L, Marafi D, Posey JE, Coban-Akdemir Z, Harel T, Grochowski CM, Loucks H, Devine WP, Van Ziffle J, Doherty D, Lupski JR, Shieh JT., Free PMC Article

    07/16/2022
    MiR-200c-3p regulates pyroptosis by targeting SLC30A7 in diabetic retinopathy.

    MiR-200c-3p regulates pyroptosis by targeting SLC30A7 in diabetic retinopathy.
    Li W, Yang S, Chen G, He S.

    05/28/2022
    ZnT7 RNAi favors Raf(GOF)scrib(-/-)-induced tumor growth and invasion in Drosophila through JNK signaling pathway.

    ZnT7 RNAi favors Raf(GOF)scrib(-/-)-induced tumor growth and invasion in Drosophila through JNK signaling pathway.
    Wei T, Ji X, Gao Y, Zhu X, Xiao G.

    10/16/2021
    We observed Bonferroni-corrected statistically significant interactions between albuminuria, urine cadmium levels and polymorphisms in gene SLC30A7 and RAC1.

    Urine cadmium levels and albuminuria in a general population from Spain: A gene-environment interaction analysis.
    Grau-Perez M, Pichler G, Galan-Chilet I, Briongos-Figuero LS, Rentero-Garrido P, Lopez-Izquierdo R, Navas-Acien A, Weaver V, García-Barrera T, Gomez-Ariza JL, Martín-Escudero JC, Chaves FJ, Redon J, Tellez-Plaza M.

    02/17/2018
    Overexpression of ZnT7 is accompanied by activation of PI3K/Akt pathway and inhibiting HG-induced apoptosis.

    Zinc transporter 5 and zinc transporter 7 induced by high glucose protects peritoneal mesothelial cells from undergoing apoptosis.
    Zhang X, Liang D, Guo B, Deng W, Chi ZH, Cai Y, Wang L, Ma J.

    09/21/2013
    Intracellular transporters such as ZnT7, influence the transcellular movement of zinc across the enterocyte

    Gastrointestinal factors influencing zinc absorption and homeostasis.
    Cousins RJ., Free PMC Article

    06/18/2011
    Observational study of gene-disease association. (HuGE Navigator)

    Polymorphisms in mitochondrial genes and prostate cancer risk.
    Wang L, McDonnell SK, Hebbring SJ, Cunningham JM, St Sauver J, Cerhan JR, Isaya G, Schaid DJ, Thibodeau SN., Free PMC Article

    09/20/2009
    Data show that ZNT7 is extensively present in the Abeta-positive plaques in the cortex of human AD brains.

    Abundant expression of zinc transporters in the amyloid plaques of Alzheimer's disease brain.
    Zhang LH, Wang X, Stoltenberg M, Danscher G, Huang L, Wang ZY.

    01/21/2010
    hZnT-7 is up-regulated in response to cellular zinc depletion in Raji & THP-1 cells.

    Intracellular zinc homeostasis in leukocyte subsets is regulated by different expression of zinc exporters ZnT-1 to ZnT-9.
    Overbeck S, Uciechowski P, Ackland ML, Ford D, Rink L.

    01/21/2010
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