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    ARF3 ARF GTPase 3 [ Homo sapiens (human) ]

    Gene ID: 377, updated on 27-Nov-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    The small GTPase ARF3 controls invasion modality and metastasis by regulating N-cadherin levels.

    The small GTPase ARF3 controls invasion modality and metastasis by regulating N-cadherin levels.
    Sandilands E, Freckmann EC, Cumming EM, Román-Fernández A, McGarry L, Anand J, Galbraith L, Mason S, Patel R, Nixon C, Cartwright J, Leung HY, Blyth K, Bryant DM., Free PMC Article

    03/8/2023
    Dominant ARF3 variants disrupt Golgi integrity and cause a neurodevelopmental disorder recapitulated in zebrafish.

    Dominant ARF3 variants disrupt Golgi integrity and cause a neurodevelopmental disorder recapitulated in zebrafish.
    Fasano G, Muto V, Radio FC, Venditti M, Mosaddeghzadeh N, Coppola S, Paradisi G, Zara E, Bazgir F, Ziegler A, Chillemi G, Bertuccini L, Tinari A, Vetro A, Pantaleoni F, Pizzi S, Conti LA, Petrini S, Bruselles A, Prandi IG, Mancini C, Chandramouli B, Barth M, Bris C, Milani D, Selicorni A, Macchiaiolo M, Gonfiantini MV, Bartuli A, Mariani R, Curry CJ, Guerrini R, Slavotinek A, Iascone M, Dallapiccola B, Ahmadian MR, Lauri A, Tartaglia M., Free PMC Article

    11/19/2022
    Upregulation of ARF3 is associated with ovarian cancer.

    Overexpression of ARF1 is associated with cell proliferation and migration through PI3K signal pathway in ovarian cancer.
    Gu G, Chen Y, Duan C, Zhou L, Chen C, Chen J, Cheng J, Shi N, Jin Y, Xi Q, Zhong J.

    04/29/2017
    observations indicate that Arf1 and Arf3 as well as Arf6 play important roles in cytokinesis.

    Class I Arfs (Arf1 and Arf3) and Arf6 are localized to the Flemming body and play important roles in cytokinesis.
    Hanai A, Ohgi M, Yagi C, Ueda T, Shin HW, Nakayama K., Free PMC Article

    09/24/2016
    activated ARF3 is associated with Unc93B1 and TLR9, suggesting that ARF3 conducts TLR9 trafficking by forming the TLR9-Unc93B1-ARF3 complex.

    ADP-Ribosylation Factor 3 Mediates Cytidine-Phosphate-Guanosine Oligodeoxynucleotide-Induced Responses by Regulating Toll-Like Receptor 9 Trafficking.
    Wu JY, Kuo CC., Free PMC Article

    08/6/2016
    ARF1+ARF3 are required for integrity of recycling endosomes but are involved in distinct transport pathways: they are required for the transferrin recycling pathway from endosomes to the plasma membrane.

    ARF1 and ARF4 regulate recycling endosomal morphology and retrograde transport from endosomes to the Golgi apparatus.
    Nakai W, Kondo Y, Saitoh A, Naito T, Nakayama K, Shin HW., Free PMC Article

    04/5/2014
    ARF1 and ARF3 are redundantly required for the integrity of recycling endosomes

    ARF1 and ARF3 are required for the integrity of recycling endosomes and the recycling pathway.
    Kondo Y, Hanai A, Nakai W, Katoh Y, Nakayama K, Shin HW.

    10/26/2013
    These results suggest that Arf3 plays a unique function at the trans-Golgi network that likely involves recruitment by a specific receptor.

    Arf3 is activated uniquely at the trans-Golgi network by brefeldin A-inhibited guanine nucleotide exchange factors.
    Manolea F, Chun J, Chen DW, Clarke I, Summerfeldt N, Dacks JB, Melançon P., Free PMC Article

    10/23/2010
    Observational study of gene-disease association, gene-environment interaction, and pharmacogenomic / toxicogenomic. (HuGE Navigator)

    Variation at the NFATC2 locus increases the risk of thiazolidinedione-induced edema in the Diabetes REduction Assessment with ramipril and rosiglitazone Medication (DREAM) study.
    Bailey SD, Xie C, Do R, Montpetit A, Diaz R, Mohan V, Keavney B, Yusuf S, Gerstein HC, Engert JC, Anand S, DREAM investigators., Free PMC Article

    09/15/2010
    Observational study of gene-disease association. (HuGE Navigator)

    Gene-centric association signals for lipids and apolipoproteins identified via the HumanCVD BeadChip.
    Talmud PJ, Drenos F, Shah S, Shah T, Palmen J, Verzilli C, Gaunt TR, Pallas J, Lovering R, Li K, Casas JP, Sofat R, Kumari M, Rodriguez S, Johnson T, Newhouse SJ, Dominiczak A, Samani NJ, Caulfield M, Sever P, Stanton A, Shields DC, Padmanabhan S, Melander O, Hastie C, Delles C, Ebrahim S, Marmot MG, Smith GD, Lawlor DA, Munroe PB, Day IN, Kivimaki M, Whittaker J, Humphries SE, Hingorani AD, ASCOT investigators, NORDIL investigators, BRIGHT Consortium., Free PMC Article

    09/15/2010
    expression and subcellular redistribution by heregulin

    Heregulin promotes expression and subcellular redistribution of ADP-ribosylation factor 3.
    Li F, Mandal M, Mishra SK, Barnes CJ, Kumar R.

    01/21/2010
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