U.S. flag

An official website of the United States government

Format

Send to:

Choose Destination
    • Showing Current items.

    Slc2a4 solute carrier family 2 (facilitated glucose transporter), member 4 [ Mus musculus (house mouse) ]

    Gene ID: 20528, updated on 27-Nov-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    Picalm, a novel regulator of GLUT4-trafficking in adipose tissue.

    Picalm, a novel regulator of GLUT4-trafficking in adipose tissue.
    Gaugel J, Haacke N, Sehgal R, Jähnert M, Jonas W, Hoffmann A, Blüher M, Ghosh A, Noé F, Wolfrum C, Tan J, Schürmann A, Fazakerley DJ, Vogel H., Free PMC Article

    09/24/2024
    Nuclear Factor-Kappa-B Mediates the Advanced Glycation End Product-Induced Repression of Slc2a4 Gene Expression in 3T3-L1 Adipocytes.

    Nuclear Factor-Kappa-B Mediates the Advanced Glycation End Product-Induced Repression of Slc2a4 Gene Expression in 3T3-L1 Adipocytes.
    Michalani MLE, Passarelli M, Machado UF., Free PMC Article

    09/19/2024
    Adipose tissue macrophage-derived microRNA-210-3p disrupts systemic insulin sensitivity by silencing GLUT4 in obesity.

    Adipose tissue macrophage-derived microRNA-210-3p disrupts systemic insulin sensitivity by silencing GLUT4 in obesity.
    Patra D, Ramprasad P, Sharma S, Dey U, Kumar V, Singh S, Dasgupta S, Kumar A, Tikoo K, Pal D., Free PMC Article

    07/23/2024
    Phosphorylation of Syntaxin 4 by the Insulin Receptor Drives Exocytic SNARE Complex Formation to Deliver GLUT4 to the Cell Surface.

    Phosphorylation of Syntaxin 4 by the Insulin Receptor Drives Exocytic SNARE Complex Formation to Deliver GLUT4 to the Cell Surface.
    Kioumourtzoglou D, Black HL, Al Tobi M, Livingstone R, Petrie JR, Boyle JG, Gould GW, Bryant NJ., Free PMC Article

    01/3/2024
    LRRK2 negatively regulates glucose tolerance via regulation of membrane translocation of GLUT4 in adipocytes.

    LRRK2 negatively regulates glucose tolerance via regulation of membrane translocation of GLUT4 in adipocytes.
    Kawakami F, Imai M, Isaka Y, Cookson MR, Maruyama H, Kubo M, Farrer MJ, Kanzaki M, Kawashima R, Maekawa T, Tamaki S, Kurosaki Y, Kojima F, Ohba K, Ichikawa T., Free PMC Article

    12/16/2023
    Bone marrow mesenchymal stem cell-derived exosomes reduce insulin resistance and obesity in mice via the PI3K/AKT signaling pathway.

    Bone marrow mesenchymal stem cell-derived exosomes reduce insulin resistance and obesity in mice via the PI3K/AKT signaling pathway.
    Shi H, Hao X, Sun Y, Zhang H, Zhao Y, Wang B, Lu J, Hou W, Yan Y, Yu X, Xue L, Luo X, Wang H., Free PMC Article

    06/14/2023
    Microtubule-mediated GLUT4 trafficking is disrupted in insulin-resistant skeletal muscle.

    Microtubule-mediated GLUT4 trafficking is disrupted in insulin-resistant skeletal muscle.
    Knudsen JR, Persson KW, Henriquez-Olguin C, Li Z, Di Leo N, Hesselager SA, Raun SH, Hingst JR, Trouillon R, Wohlwend M, Wojtaszewski JFP, Gijs MAM, Jensen TE., Free PMC Article

    05/17/2023
    Tectorigenin targets PKACalpha to promote GLUT4 expression in skeletal muscle and improve insulin resistance in vitro and in vivo.

    Tectorigenin targets PKACα to promote GLUT4 expression in skeletal muscle and improve insulin resistance in vitro and in vivo.
    Yao X, Liu L, Shao W, Bai M, Ding X, Wang G, Wang S, Zheng L, Sun Y, Wang G, Huang Y, Yu C, Song Z, Bao Y, Yang S, Sun L., Free PMC Article

    04/19/2023
    Effects of short-term endurance and strength exercise in the molecular regulation of skeletal muscle in hyperinsulinemic and hyperglycemic Slc2a4[+/-] mice.

    Effects of short-term endurance and strength exercise in the molecular regulation of skeletal muscle in hyperinsulinemic and hyperglycemic Slc2a4(+/-) mice.
    Muñoz VR, Botezelli JD, Gaspar RC, da Rocha AL, Vieira RFL, Crisol BM, Braga RR, Severino MB, Nakandakari SCBR, Antunes GC, Brunetto SQ, Ramos CD, Velloso LA, Simabuco FM, de Moura LP, da Silva ASR, Ropelle ER, Cintra DE, Pauli JR., Free PMC Article

    04/17/2023
    GSK3alpha phosphorylates dynamin-2 to promote GLUT4 endocytosis in muscle cells.

    GSK3α phosphorylates dynamin-2 to promote GLUT4 endocytosis in muscle cells.
    Laiman J, Hsu YJ, Loh J, Tang WC, Chuang MC, Liu HK, Yang WS, Chen BC, Chuang LM, Chang YC, Liu YW., Free PMC Article

    12/3/2022
    A high-fat diet catalyzes progression to hyperglycemia in mice with selective impairment of insulin action in Glut4-expressing tissues.

    A high-fat diet catalyzes progression to hyperglycemia in mice with selective impairment of insulin action in Glut4-expressing tissues.
    Reilly AM, Yan S, Huang M, Abhyankar SD, Conley JM, Bone RN, Stull ND, Horan DJ, Roh HC, Robling AG, Ericsson AC, Dong XC, Evans-Molina C, Ren H., Free PMC Article

    05/14/2022
    MYH10 Governs Adipocyte Function and Adipogenesis through Its Interaction with GLUT4.

    MYH10 Governs Adipocyte Function and Adipogenesis through Its Interaction with GLUT4.
    Kislev N, Mor-Yossef Moldovan L, Barak R, Egozi M, Benayahu D., Free PMC Article

    03/26/2022
    Defective insulin-stimulated GLUT4 translocation in brown adipocytes induces systemic glucose homeostasis dysregulation independent of thermogenesis in female mice.

    Defective insulin-stimulated GLUT4 translocation in brown adipocytes induces systemic glucose homeostasis dysregulation independent of thermogenesis in female mice.
    Picatoste B, Yammine L, Leahey RA, Soares D, Johnson EF, Cohen P, McGraw TE., Free PMC Article

    03/26/2022
    Knockout of syntaxin-4 in 3T3-L1 adipocytes reveals new insight into GLUT4 trafficking and adiponectin secretion.

    Knockout of syntaxin-4 in 3T3-L1 adipocytes reveals new insight into GLUT4 trafficking and adiponectin secretion.
    Black HL, Livingstone R, Mastick CC, Al Tobi M, Taylor H, Geiser A, Stirrat L, Kioumourtzoglou D, Petrie JR, Boyle JG, Bryant NJ, Gould GW., Free PMC Article

    02/5/2022
    Murine remote ischemic preconditioning upregulates preferentially hepatic glucose transporter-4 via its plasma membrane translocation, leading to accumulating glycogen in the liver.

    Murine remote ischemic preconditioning upregulates preferentially hepatic glucose transporter-4 via its plasma membrane translocation, leading to accumulating glycogen in the liver.
    Kurabayashi A, Furihata K, Iwashita W, Tanaka C, Fukuhara H, Inoue K, Furihata M, Kakinuma Y.

    01/29/2022
    Development of metabolic dysfunction in mice lacking chemerin.

    Development of metabolic dysfunction in mice lacking chemerin.
    Fang P, Han L, Yu M, Han S, Wang M, Huang Y, Guo W, Wei Q, Shang W, Min W.

    01/29/2022
    AMPK/PGC-1alpha/GLUT4-Mediated Effect of Icariin on Hyperlipidemia-Induced Non-Alcoholic Fatty Liver Disease and Lipid Metabolism Disorder in Mice.

    AMPK/PGC-1α/GLUT4-Mediated Effect of Icariin on Hyperlipidemia-Induced Non-Alcoholic Fatty Liver Disease and Lipid Metabolism Disorder in Mice.
    Lin W, Jin Y, Hu X, Huang E, Zhu Q.

    01/22/2022
    Tmod3 Phosphorylation Mediates AMPK-Dependent GLUT4 Plasma Membrane Insertion in Myoblasts.

    Tmod3 Phosphorylation Mediates AMPK-Dependent GLUT4 Plasma Membrane Insertion in Myoblasts.
    Shrestha MM, Lim CY, Bi X, Robinson RC, Han W., Free PMC Article

    12/25/2021
    A xanthene derivative, DS20060511, attenuates glucose intolerance by inducing skeletal muscle-specific GLUT4 translocation in mice.

    A xanthene derivative, DS20060511, attenuates glucose intolerance by inducing skeletal muscle-specific GLUT4 translocation in mice.
    Furuzono S, Kubota T, Taura J, Konishi M, Naito A, Tsutsui M, Karasawa H, Kubota N, Kadowaki T., Free PMC Article

    12/11/2021
    BAG6 contributes to glucose uptake by supporting the cell surface translocation of the glucose transporter GLUT4.

    BAG6 contributes to glucose uptake by supporting the cell surface translocation of the glucose transporter GLUT4.
    Minami S, Yokota N, Kawahara H., Free PMC Article

    08/28/2021
    Insulin-promoted mobilization of GLUT4 from a perinuclear storage site requires RAB10.

    Insulin-promoted mobilization of GLUT4 from a perinuclear storage site requires RAB10.
    Brumfield A, Chaudhary N, Molle D, Wen J, Graumann J, McGraw TE., Free PMC Article

    08/14/2021
    LRRK2 Inhibition Ameliorates Dexamethasone-Induced Glucose Intolerance via Prevents Impairment in GLUT4 Membrane Translocation in Adipocytes.

    LRRK2 Inhibition Ameliorates Dexamethasone-Induced Glucose Intolerance via Prevents Impairment in GLUT4 Membrane Translocation in Adipocytes.
    Imai M, Kawakami F, Kubo M, Kanzaki M, Maruyama H, Kawashima R, Maekawa T, Kurosaki Y, Kojima F, Ichikawa T.

    07/17/2021
    MicroRNA378d inhibits Glut4 by targeting Rsbn1 in vitamin D deficient ovarian granulosa cells.

    MicroRNA‑378d inhibits Glut4 by targeting Rsbn1 in vitamin D deficient ovarian granulosa cells.
    Sun H, Shi Y, Shang Y, Chen X, Xia F., Free PMC Article

    05/15/2021
    Adiponectin stimulates glucose uptake in mouse blastocysts and embryonic carcinoma cells.

    Adiponectin stimulates glucose uptake in mouse blastocysts and embryonic carcinoma cells.
    Burkuš J, Navarrete Santos A, Schindler M, Babeľová J, Jung JS, Špirková A, Kšiňanová M, Kovaříková V, Fischer B, Koppel J, Fabian D, Čikoš Š.

    05/8/2021
    TUG is a calpain-10 substrate involved in the translocation of GLUT4 in adipocytes.

    TUG is a calpain-10 substrate involved in the translocation of GLUT4 in adipocytes.
    Pánico P, Hiriart M, Ostrosky-Wegman P, Salazar AM.

    04/13/2021
    firstprevious page of 15 nextlast