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    Nr2f1 nuclear receptor subfamily 2, group F, member 1 [ Mus musculus (house mouse) ]

    Gene ID: 13865, updated on 27-Nov-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    NR2F1 shapes mitochondria in the mouse brain, providing new insights into Bosch-Boonstra-Schaaf optic atrophy syndrome.

    NR2F1 shapes mitochondria in the mouse brain, providing new insights into Bosch-Boonstra-Schaaf optic atrophy syndrome.
    Bonzano S, Dallorto E, Molineris I, Michelon F, Crisci I, Gambarotta G, Neri F, Oliviero S, Beckervordersandforth R, Lie DC, Peretto P, Bovetti S, Studer M, De Marchis S., Free PMC Article

    07/3/2023
    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
    COUP-TFI/Nr2f1 Orchestrates Intrinsic Neuronal Activity during Development of the Somatosensory Cortex.

    COUP-TFI/Nr2f1 Orchestrates Intrinsic Neuronal Activity during Development of the Somatosensory Cortex.
    Del Pino I, Tocco C, Magrinelli E, Marcantoni A, Ferraguto C, Tomagra G, Bertacchi M, Alfano C, Leinekugel X, Frick A, Studer M.

    12/4/2021
    Nr2f1 heterozygous knockout mice recapitulate neurological phenotypes of Bosch-Boonstra-Schaaf optic atrophy syndrome and show impaired hippocampal synaptic plasticity.

    Nr2f1 heterozygous knockout mice recapitulate neurological phenotypes of Bosch-Boonstra-Schaaf optic atrophy syndrome and show impaired hippocampal synaptic plasticity.
    Chen CA, Wang W, Pedersen SE, Raman A, Seymour ML, Ruiz FR, Xia A, van der Heijden ME, Wang L, Yin J, Lopez J, Rech ME, Lewis RA, Wu SM, Liu Z, Pereira FA, Pautler RG, Zoghbi HY, Schaaf CP., Free PMC Article

    07/10/2021
    NR2F1 regulates regional progenitor dynamics in the mouse neocortex and cortical gyrification in BBSOAS patients.

    NR2F1 regulates regional progenitor dynamics in the mouse neocortex and cortical gyrification in BBSOAS patients.
    Bertacchi M, Romano AL, Loubat A, Tran Mau-Them F, Willems M, Faivre L, Khau van Kien P, Perrin L, Devillard F, Sorlin A, Kuentz P, Philippe C, Garde A, Neri F, Di Giaimo R, Oliviero S, Cappello S, D'Incerti L, Frassoni C, Studer M., Free PMC Article

    04/13/2021
    Mouse Nr2f1 haploinsufficiency results in model of Bosch-Boonstra-Schaaf optic atrophy.

    Mouse Nr2f1 haploinsufficiency unveils new pathological mechanisms of a human optic atrophy syndrome.
    Bertacchi M, Gruart A, Kaimakis P, Allet C, Serra L, Giacobini P, Delgado-García JM, Bovolenta P, Studer M., Free PMC Article

    05/9/2020
    Loss of Nr2f1 in mouse cortex leads to increased locomotor activity but less anxiety.

    Hyperactive and anxiolytic-like behaviors result from loss of COUP-TFI/Nr2f1 in the mouse cortex.
    Contesse T, Ayrault M, Mantegazza M, Studer M, Deschaux O.

    01/18/2020
    COUP-TFI as a central regulator of the neuron-astroglia cell fate decision and a key modulator during neuroinflammation in the adult hippocampus.

    Neuron-Astroglia Cell Fate Decision in the Adult Mouse Hippocampal Neurogenic Niche Is Cell-Intrinsically Controlled by COUP-TFI In Vivo.
    Bonzano S, Crisci I, Podlesny-Drabiniok A, Rolando C, Krezel W, Studer M, De Marchis S.

    11/9/2019
    These data support a translational control of COUP-TFI gradient expression by FGF8 via miR-21 and contribute to our understanding of how regionalized expression is established during neocortical area mapping.

    The microRNA miR-21 Is a Mediator of FGF8 Action on Cortical COUP-TFI Translation.
    Terrigno M, Bertacchi M, Pandolfini L, Baumgart M, Calvello M, Cellerino A, Studer M, Cremisi F., Free PMC Article

    09/21/2019
    These results indicate that COUP-TF1 plays an important role in modulating the timing and magnitude of T3-stimulated gene expression required for normal corticogenesis.

    COUP-TF1 Modulates Thyroid Hormone Action in an Embryonic Stem-Cell Model of Cortical Pyramidal Neuronal Differentiation.
    Teng X, Liu YY, Teng W, Brent GA., Free PMC Article

    02/2/2019
    COUP-TFI expression is required for functional organization of the hippocampal septo-temporal longitudinal axis

    Gradient COUP-TFI Expression Is Required for Functional Organization of the Hippocampal Septo-Temporal Longitudinal Axis.
    Flore G, Di Ruberto G, Parisot J, Sannino S, Russo F, Illingworth EA, Studer M, De Leonibus E.

    03/10/2018
    These data identify silencer elements of the Nr2f1-A830082K12Rik gene pair as new candidate loci for Waardenburg syndrome type 4.

    Upregulation of the Nr2f1-A830082K12Rik gene pair in murine neural crest cells results in a complex phenotype reminiscent of Waardenburg syndrome type 4.
    Bergeron KF, Nguyen CM, Cardinal T, Charrier B, Silversides DW, Pilon N., Free PMC Article

    12/9/2017
    Coup-TF1 and Coup-TF2 control subtype and laminar identity of MGE-derived neocortical interneurons

    Coup-TF1 and Coup-TF2 control subtype and laminar identity of MGE-derived neocortical interneurons.
    Hu JS, Vogt D, Lindtner S, Sandberg M, Silberberg SN, Rubenstein JLR., Free PMC Article

    10/7/2017
    COUP-TFI is required predominantly in Dentate gyrus progenitors for modulating expression of the Cxcr4 receptor during granule cell neurogenesis and migration.

    COUP-TFI mitotically regulates production and migration of dentate granule cells and modulates hippocampal Cxcr4 expression.
    Parisot J, Flore G, Bertacchi M, Studer M.

    09/23/2017
    Transcription factors COUP-TFI and COUP-TFII are required for the production of granule cells in the mouse olfactory bulb.

    Transcription factors COUP-TFI and COUP-TFII are required for the production of granule cells in the mouse olfactory bulb.
    Zhou X, Liu F, Tian M, Xu Z, Liang Q, Wang C, Li J, Liu Z, Tang K, He M, Yang Z.

    07/25/2015
    Findings provide evidence that Sp8 and another transcription factor, COUP-TF1, mutually repress each other's cortical neuroepithelial expression along the anterior-posterior and dorsoventral axes

    Sp8 and COUP-TF1 reciprocally regulate patterning and Fgf signaling in cortical progenitors.
    Borello U, Madhavan M, Vilinsky I, Faedo A, Pierani A, Rubenstein J, Campbell K., Free PMC Article

    12/20/2014
    a novel tissue-dependent coregulatory network for NR2F1, miR-140, and Klf9 in the inner ear

    A coregulatory network of NR2F1 and microRNA-140.
    Chiang DY, Cuthbertson DW, Ruiz FR, Li N, Pereira FA., Free PMC Article

    10/4/2014
    odour deprivation, which is known to downregulate tyrosine hydroxylase expression in the olfactory bulb, also downregulates COUP-TFI in dopaminergic cells, indicating a correlation between tyrosine hydroxylase- and COUP-TFI-activity-dependent action.

    COUP-TFI controls activity-dependent tyrosine hydroxylase expression in adult dopaminergic olfactory bulb interneurons.
    Bovetti S, Bonzano S, Garzotto D, Giannelli SG, Iannielli A, Armentano M, Studer M, De Marchis S.

    02/15/2014
    CoupTFI collaborates with retinoic acid signaling to regulate both cortical ventricular zone progenitor cell behavior and cortical neurogenesis

    CoupTFI interacts with retinoic acid signaling during cortical development.
    Harrison-Uy SJ, Siegenthaler JA, Faedo A, Rubenstein JL, Pleasure SJ., Free PMC Article

    12/7/2013
    COUP-TFI and related NRs such as the COUPTFs and PNR can selectively associate with the developmental corepressor BCL11A via a conserved motif F/YSXXLXXL/Y within the RID1 and RID2 domains. The interaction with BCL11A facilitates COUP-TFII-mediated repression of the RARb2 gene.

    A signature motif mediating selective interactions of BCL11A with the NR2E/F subfamily of orphan nuclear receptors.
    Chan CM, Fulton J, Montiel-Duarte C, Collins HM, Bharti N, Wadelin FR, Moran PM, Mongan NP, Heery DM, Chan CM, Fulton J, Montiel-Duarte C, Collins HM, Bharti N, Wadelin FR, Moran PM, Mongan NP, Heery DM., Free PMC Articles: PMC3834829, PMC3834829

    09/24/2013
    Interaction of NSD1 with the NR2E/F subfamily including COUP-TFI, COUP-TFII, EAR2 and TLX requires a F/YSXXLXXL/Y motif. NSD1 interaction with liganded NRs is mediated by an overlapping LXXLL motif.

    A signature motif mediating selective interactions of BCL11A with the NR2E/F subfamily of orphan nuclear receptors.
    Chan CM, Fulton J, Montiel-Duarte C, Collins HM, Bharti N, Wadelin FR, Moran PM, Mongan NP, Heery DM, Chan CM, Fulton J, Montiel-Duarte C, Collins HM, Bharti N, Wadelin FR, Moran PM, Mongan NP, Heery DM., Free PMC Articles: PMC3834829, PMC3834829

    09/24/2013
    Our data suggest that the non-protein coding locus Mcs1a regulates Nr2f1, which is a candidate modifier of differentiation, proliferation, and mammary cancer risk.

    The gene desert mammary carcinoma susceptibility locus Mcs1a regulates Nr2f1 modifying mammary epithelial cell differentiation and proliferation.
    Smits BM, Haag JD, Rissman AI, Sharma D, Tran A, Schoenborn AA, Baird RC, Peiffer DS, Leinweber DQ, Muelbl MJ, Meilahn AL, Eichelberg MR, Leng N, Kendziorski C, John MC, Powers PA, Alexander CM, Gould MN., Free PMC Article

    09/14/2013
    study extends the pool of recognized putative AR targets and identifies a negatively regulated target of AR - COUP-TF1 - which could possibly play a role in human prostate cancer

    Genome-wide analysis of androgen receptor targets reveals COUP-TF1 as a novel player in human prostate cancer.
    Perets R, Kaplan T, Stein I, Hidas G, Tayeb S, Avraham E, Ben-Neriah Y, Simon I, Pikarsky E., Free PMC Article

    06/15/2013
    Exogenous expression of COUP-TFI in AS cells, in a dose-dependent fashion, leads to growth inhibition.

    Role of COUP-TFI during retinoic acid-induced differentiation of P19 cells to endodermal cells.
    Pickens BS, Teets BW, Soprano KJ, Soprano DR., Free PMC Article

    05/25/2013
    Data demonstrate that COUP-TFI modulates late-born neuron migration and favours proper differentiation of callosal projection neurons by finely regulating Rnd2 expression levels.

    COUP-TFI promotes radial migration and proper morphology of callosal projection neurons by repressing Rnd2 expression.
    Alfano C, Viola L, Heng JI, Pirozzi M, Clarkson M, Flore G, De Maio A, Schedl A, Guillemot F, Studer M.

    12/31/2011
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