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    Hnf4a hepatic nuclear factor 4, alpha [ Mus musculus (house mouse) ]

    Gene ID: 15378, updated on 11-Apr-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    HNF4alpha ubiquitination mediated by Peli1 impairs FAO and accelerates pressure overload-induced myocardial hypertrophy.

    HNF4α ubiquitination mediated by Peli1 impairs FAO and accelerates pressure overload-induced myocardial hypertrophy.
    Hou Y, Shi P, Du H, Zhu C, Tang C, Que L, Zhu G, Liu L, Chen Q, Li C, Shao G, Li Y, Li J., Free PMC Article

    02/17/2024
    HNF4alpha isoforms regulate the circadian balance between carbohydrate and lipid metabolism in the liver.

    HNF4α isoforms regulate the circadian balance between carbohydrate and lipid metabolism in the liver.
    Deans JR, Deol P, Titova N, Radi SH, Vuong LM, Evans JR, Pan S, Fahrmann J, Yang J, Hammock BD, Fiehn O, Fekry B, Eckel-Mahan K, Sladek FM., Free PMC Article

    01/3/2024
    Protective roles of adiponectin and molecular signatures of HNF4alpha and PPARalpha as downstream targets of adiponectin in pancreatic beta cells.

    Protective roles of adiponectin and molecular signatures of HNF4α and PPARα as downstream targets of adiponectin in pancreatic β cells.
    Onodera T, Kim DS, Ye R, Wang MY, Chen S, Field BC, Straub L, Sun XN, Li C, Lee C, Paredes M, Crewe C, Zhao S, Kusminski CM, Gordillo R, Scherer PE., Free PMC Article

    11/30/2023
    Hepatocyte nuclear factor 4alpha mediated quinolinate phosphoribosylltransferase (QPRT) expression in the kidney facilitates resilience against acute kidney injury.

    Hepatocyte nuclear factor 4α mediated quinolinate phosphoribosylltransferase (QPRT) expression in the kidney facilitates resilience against acute kidney injury.
    Clark AJ, Saade MC, Vemireddy V, Vu KQ, Flores BM, Etzrodt V, Ciampa EJ, Huang H, Takakura A, Zandi-Nejad K, Zsengellér ZK, Parikh SM.,

    11/27/2023
    Spontaneous episodic inflammation in the intestines of mice lacking HNF4A is driven by microbiota and associated with early life microbiota alterations.

    Spontaneous episodic inflammation in the intestines of mice lacking HNF4A is driven by microbiota and associated with early life microbiota alterations.
    Kelly C, Jawahar J, Davey L, Everitt JI, Galanko JA, Anderson C, Avendano JE, McCann JR, Sartor RB, Valdivia RH, Rawls JF., Free PMC Article

    09/27/2023
    Pharmacologic inhibition of HNF4alpha prevents parenteral nutrition associated cholestasis in mice.

    Pharmacologic inhibition of HNF4α prevents parenteral nutrition associated cholestasis in mice.
    Ghosh S, Devereaux MW, Orlicky DJ, Sokol RJ., Free PMC Article

    05/18/2023
    Reactive oxygen species induce HNF-4alpha expression via the ASK1-CREB pathway, promoting ChREBP expression and lipogenesis in hepatocytes.

    Reactive oxygen species induce HNF-4α expression via the ASK1-CREB pathway, promoting ChREBP expression and lipogenesis in hepatocytes.
    Seo E, Nam H, Jun HS.

    01/28/2023
    Impaired hepatic glucose metabolism and liver-alpha-cell axis in mice with liver-specific ablation of the Hepatocyte Nuclear Factor 4alpha (Hnf4a) gene.

    Impaired hepatic glucose metabolism and liver-α-cell axis in mice with liver-specific ablation of the Hepatocyte Nuclear Factor 4α (Hnf4a) gene.
    Thymiakou E, Tzardi M, Kardassis D.

    01/7/2023
    Mettl3-mediated mRNA m(6)A modification controls postnatal liver development by modulating the transcription factor Hnf4a.

    Mettl3-mediated mRNA m(6)A modification controls postnatal liver development by modulating the transcription factor Hnf4a.
    Xu Y, Zhou Z, Kang X, Pan L, Liu C, Liang X, Chu J, Dong S, Li Y, Liu Q, Sun Y, Yu S, Zhang Q., Free PMC Article

    08/13/2022
    hsa-miR-34a-5p Ameliorates Hepatic Ischemia/Reperfusion Injury Via Targeting HNF4alpha.

    hsa-miR-34a-5p Ameliorates Hepatic Ischemia/Reperfusion Injury Via Targeting HNF4α.
    Zheng X, Wang G, Yuan J, Li N, Yan B, Yan J, Sheng Y., Free PMC Article

    07/30/2022
    Crosstalk of hepatocyte nuclear factor 4a and glucocorticoid receptor in the regulation of lipid metabolism in mice fed a high-fat-high-sugar diet.

    Crosstalk of hepatocyte nuclear factor 4a and glucocorticoid receptor in the regulation of lipid metabolism in mice fed a high-fat-high-sugar diet.
    Lu H, Lei X, Winkler R, John S, Kumar D, Li W, Alnouti Y., Free PMC Article

    06/11/2022
    HNF4A modulates glucocorticoid action in the liver.

    HNF4A modulates glucocorticoid action in the liver.
    Hunter AL, Poolman TM, Kim D, Gonzalez FJ, Bechtold DA, Loudon ASI, Iqbal M, Ray DW., Free PMC Article

    04/30/2022
    Antagonistic epistasis of Hnf4alpha and FoxO1 metabolic networks through enhancer interactions in beta-cell function.

    Antagonistic epistasis of Hnf4α and FoxO1 metabolic networks through enhancer interactions in β-cell function.
    Kuo T, Du W, Miyachi Y, Dadi PK, Jacobson DA, Segrè D, Accili D., Free PMC Article

    03/26/2022
    Genome-Wide ChIPseq Analysis of AhR, COUP-TF, and HNF4 Enrichment in TCDD-Treated Mouse Liver.

    Genome-Wide ChIPseq Analysis of AhR, COUP-TF, and HNF4 Enrichment in TCDD-Treated Mouse Liver.
    Cholico GN, Nault R, Zacharewski TR., Free PMC Article

    03/12/2022
    The transcription factor hepatocyte nuclear factor 4A acts in the intestine to promote white adipose tissue energy storage.

    The transcription factor hepatocyte nuclear factor 4A acts in the intestine to promote white adipose tissue energy storage.
    Girard R, Tremblay S, Noll C, St-Jean S, Jones C, Gélinas Y, Maloum-Rami F, Perreault N, Laplante M, Carpentier AC, Boudreau F., Free PMC Article

    02/12/2022
    Hepatocyte Nuclear Factor 4-alpha (HNF4alpha) controls the insulin resistance-induced pancreatic beta-cell mass expansion.

    Hepatocyte Nuclear Factor 4-α (HNF4α) controls the insulin resistance-induced pancreatic β-cell mass expansion.
    Barth R, Ruoso C, Ferreira SM, de Ramos FC, Lima FB, Boschero AC, Santos GJD.

    01/15/2022
    Splicing Factor SLU7 Prevents Oxidative Stress-Mediated Hepatocyte Nuclear Factor 4alpha Degradation, Preserving Hepatic Differentiation and Protecting From Liver Damage.

    Splicing Factor SLU7 Prevents Oxidative Stress-Mediated Hepatocyte Nuclear Factor 4α Degradation, Preserving Hepatic Differentiation and Protecting From Liver Damage.
    Gárate-Rascón M, Recalde M, Jimenez M, Elizalde M, Azkona M, Uriarte I, Latasa MU, Urtasun R, Bilbao I, Sangro B, Garcia-Ruiz C, Fernandez-Checa JC, Corrales FJ, Esquivel A, Pineda-Lucena A, Fernández-Barrena MG, Ávila MA, Arechederra M, Berasain C.

    01/15/2022
    Sirtuin 2 Prevents Liver Steatosis and Metabolic Disorders by Deacetylation of Hepatocyte Nuclear Factor 4alpha.

    Sirtuin 2 Prevents Liver Steatosis and Metabolic Disorders by Deacetylation of Hepatocyte Nuclear Factor 4α.
    Ren H, Hu F, Wang D, Kang X, Feng X, Zhang L, Zhou B, Liu S, Yuan G., Free PMC Article

    01/8/2022
    Hepatocyte Nuclear Factor 4alpha Prevents the Steatosis-to-NASH Progression by Regulating p53 and Bile Acid Signaling (in mice).

    Hepatocyte Nuclear Factor 4α Prevents the Steatosis-to-NASH Progression by Regulating p53 and Bile Acid Signaling (in mice).
    Xu Y, Zhu Y, Hu S, Xu Y, Stroup D, Pan X, Bawa FC, Chen S, Gopoju R, Yin L, Zhang Y., Free PMC Article

    01/1/2022
    Hepatocyte-Specific Hepatocyte Nuclear Factor 4 Alpha (HNF4) Deletion Decreases Resting Energy Expenditure by Disrupting Lipid and Carbohydrate Homeostasis.

    Hepatocyte-Specific Hepatocyte Nuclear Factor 4 Alpha (HNF4) Deletion Decreases Resting Energy Expenditure by Disrupting Lipid and Carbohydrate Homeostasis.
    Huck I, Morris EM, Thyfault J, Apte U., Free PMC Article

    12/18/2021
    HNF4A defines tissue-specific circadian rhythms by beaconing BMAL1::CLOCK chromatin binding and shaping the rhythmic chromatin landscape.

    HNF4A defines tissue-specific circadian rhythms by beaconing BMAL1::CLOCK chromatin binding and shaping the rhythmic chromatin landscape.
    Qu M, Qu H, Jia Z, Kay SA., Free PMC Article

    12/11/2021
    Reciprocal regulation of pancreatic ductal adenocarcinoma growth and molecular subtype by HNF4alpha and SIX1/4.

    Reciprocal regulation of pancreatic ductal adenocarcinoma growth and molecular subtype by HNF4α and SIX1/4.
    Camolotto SA, Belova VK, Torre-Healy L, Vahrenkamp JM, Berrett KC, Conway H, Shea J, Stubben C, Moffitt R, Gertz J, Snyder EL., Free PMC Article

    12/4/2021
    A Novel Organoid Model of Damage and Repair Identifies HNF4alpha as a Critical Regulator of Intestinal Epithelial Regeneration.

    A Novel Organoid Model of Damage and Repair Identifies HNF4α as a Critical Regulator of Intestinal Epithelial Regeneration.
    Montenegro-Miranda PS, van der Meer JHM, Jones C, Meisner S, Vermeulen JLM, Koster J, Wildenberg ME, Heijmans J, Boudreau F, Ribeiro A, van den Brink GR, Muncan V., Free PMC Article

    07/10/2021
    The nuclear receptor HNF4 drives a brush border gene program conserved across murine intestine, kidney, and embryonic yolk sac.

    The nuclear receptor HNF4 drives a brush border gene program conserved across murine intestine, kidney, and embryonic yolk sac.
    Chen L, Luo S, Dupre A, Vasoya RP, Parthasarathy A, Aita R, Malhotra R, Hur J, Toke NH, Chiles E, Yang M, Cao W, Flores J, Ellison CE, Gao N, Sahota A, Su X, Bonder EM, Verzi MP., Free PMC Article

    06/12/2021
    CTRP12 inhibits triglyceride synthesis and export in hepatocytes by suppressing HNF-4alpha and DGAT2 expression.

    CTRP12 inhibits triglyceride synthesis and export in hepatocytes by suppressing HNF-4α and DGAT2 expression.
    Tan SY, Little HC, Sarver DC, Watkins PA, Wong GW., Free PMC Article

    05/15/2021
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