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    PIK3C3 phosphatidylinositol 3-kinase catalytic subunit type 3 [ Homo sapiens (human) ]

    Gene ID: 5289, updated on 7-Jul-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    PIK3C3/VPS34 keeps body fats healthy.

    PIK3C3/VPS34 keeps body fats healthy.
    Song W, Postoak JL, Wu L, Van Kaer L., Free PMC Article

    07/20/2023
    ULK1-mediated metabolic reprogramming regulates Vps34 lipid kinase activity by its lactylation.

    ULK1-mediated metabolic reprogramming regulates Vps34 lipid kinase activity by its lactylation.
    Jia M, Yue X, Sun W, Zhou Q, Chang C, Gong W, Feng J, Li X, Zhan R, Mo K, Zhang L, Qian Y, Sun Y, Wang A, Zou Y, Chen W, Li Y, Huang L, Yang Y, Zhao Y, Cheng X., Free PMC Article

    06/16/2023
    Listeria InlB Expedites Vacuole Escape and Intracellular Proliferation by Promoting Rab7 Recruitment via Vps34.

    Listeria InlB Expedites Vacuole Escape and Intracellular Proliferation by Promoting Rab7 Recruitment via Vps34.
    Cain RJ, Scortti M, Monzó HJ, Vázquez-Boland JA., Free PMC Article

    03/4/2023
    Adaptor SH3BGRL drives autophagy-mediated chemoresistance through promoting PIK3C3 translation and ATG12 stability in breast cancers.

    Adaptor SH3BGRL drives autophagy-mediated chemoresistance through promoting PIK3C3 translation and ATG12 stability in breast cancers.
    Zhang S, Liu X, Abdulmomen Ali Mohammed S, Li H, Cai W, Guan W, Liu D, Wei Y, Rong D, Fang Y, Haider F, Lv H, Jin Z, Chen X, Mo Z, Li L, Yang S, Wang H., Free PMC Article

    08/6/2022
    Overcoming radio-resistance in esophageal squamous cell carcinoma via hypermethylation of PIK3C3 promoter region mediated by KDM5B loss.

    Overcoming radio-resistance in esophageal squamous cell carcinoma via hypermethylation of PIK3C3 promoter region mediated by KDM5B loss.
    Wang X, Gu M, Ju Y, Zhou J., Free PMC Article

    05/28/2022
    SRSF1 inhibits autophagy through regulating Bcl-x splicing and interacting with PIK3C3 in lung cancer.

    SRSF1 inhibits autophagy through regulating Bcl-x splicing and interacting with PIK3C3 in lung cancer.
    Lv Y, Zhang W, Zhao J, Sun B, Qi Y, Ji H, Chen C, Zhang J, Sheng J, Wang T, Dominguez D, Liu H, Liu Q, Meng S, Li X, Wang Y., Free PMC Article

    03/12/2022
    Binding of Avibirnavirus VP3 to the PIK3C3-PDPK1 complex inhibits autophagy by activating the AKT-MTOR pathway.

    Binding of Avibirnavirus VP3 to the PIK3C3-PDPK1 complex inhibits autophagy by activating the AKT-MTOR pathway.
    Zhang Y, Hu B, Li Y, Deng T, Xu Y, Lei J, Zhou J., Free PMC Article

    07/31/2021
    The Warburg Micro Syndrome-associated Rab3GAP-Rab18 module promotes autolysosome maturation through the Vps34 Complex I.

    The Warburg Micro Syndrome-associated Rab3GAP-Rab18 module promotes autolysosome maturation through the Vps34 Complex I.
    Takáts S, Lévay L, Boda A, Tóth S, Simon-Vecsei Z, Rubics A, Varga Á, Lippai M, Lőrincz P, Glatz G, Juhász G.

    06/19/2021
    Targeting the Autophagy Specific Lipid Kinase VPS34 for Cancer Treatment: An Integrative Repurposing Strategy.

    Targeting the Autophagy Specific Lipid Kinase VPS34 for Cancer Treatment: An Integrative Repurposing Strategy.
    Murali P, Verma K, Rungrotmongkol T, Thangavelu P, Karuppasamy R.

    05/29/2021
    PIK3C3 regulates the expansion of liver CSCs and PIK3C3 inhibition counteracts liver cancer stem cell activity induced by PI3K inhibitor.

    PIK3C3 regulates the expansion of liver CSCs and PIK3C3 inhibition counteracts liver cancer stem cell activity induced by PI3K inhibitor.
    Liu F, Wu X, Qian Y, Jiang X, Wang Y, Gao J., Free PMC Article

    04/17/2021
    Structural basis for VPS34 kinase activation by Rab1 and Rab5 on membranes.

    Structural basis for VPS34 kinase activation by Rab1 and Rab5 on membranes.
    Tremel S, Ohashi Y, Morado DR, Bertram J, Perisic O, Brandt LTL, von Wrisberg MK, Chen ZA, Maslen SL, Kovtun O, Skehel M, Rappsilber J, Lang K, Munro S, Briggs JAG, Williams RL., Free PMC Article

    04/13/2021
    VPS34 K29/K48 branched ubiquitination governed by UBE3C and TRABID regulates autophagy, proteostasis and liver metabolism.

    VPS34 K29/K48 branched ubiquitination governed by UBE3C and TRABID regulates autophagy, proteostasis and liver metabolism.
    Chen YH, Huang TY, Lin YT, Lin SY, Li WH, Hsiao HJ, Yan RL, Tang HW, Shen ZQ, Chen GC, Wu KP, Tsai TF, Chen RH., Free PMC Article

    03/20/2021
    Auto-ubiquitination of NEDD4-1 Recruits USP13 to Facilitate Autophagy through Deubiquitinating VPS34.

    Auto-ubiquitination of NEDD4-1 Recruits USP13 to Facilitate Autophagy through Deubiquitinating VPS34.
    Xie W, Jin S, Wu Y, Xian H, Tian S, Liu DA, Guo Z, Cui J.

    03/20/2021
    Membrane characteristics tune activities of endosomal and autophagic human VPS34 complexes.

    Membrane characteristics tune activities of endosomal and autophagic human VPS34 complexes.
    Ohashi Y, Tremel S, Masson GR, McGinney L, Boulanger J, Rostislavleva K, Johnson CM, Niewczas I, Clark J, Williams RL., Free PMC Article

    02/20/2021
    PIK3C3 Acts as a Tumor Suppressor in Esophageal Squamous Cell Carcinoma and Was Regulated by MiR-340-5p.

    PIK3C3 Acts as a Tumor Suppressor in Esophageal Squamous Cell Carcinoma and Was Regulated by MiR-340-5p.
    Wang X, Gu M, Ju Y, Zhou J., Free PMC Article

    12/19/2020
    Group A Streptococcus modulates RAB1- and PIK3C3 complex-dependent autophagy.

    Group A Streptococcus modulates RAB1- and PIK3C3 complex-dependent autophagy.
    Toh H, Nozawa T, Minowa-Nozawa A, Hikichi M, Nakajima S, Aikawa C, Nakagawa I., Free PMC Article

    11/28/2020
    An iron-dependent metabolic vulnerability underlies VPS34-dependence in RKO cancer cells.

    An iron-dependent metabolic vulnerability underlies VPS34-dependence in RKO cancer cells.
    Kobylarz MJ, Goodwin JM, Kang ZB, Annand JW, Hevi S, O'Mahony E, McAllister G, Reece-Hoyes J, Wang Q, Alford J, Russ C, Lindeman A, Beibel M, Roma G, Carbone W, Knehr J, Loureiro J, Antczak C, Wiederschain D, Murphy LO, Menon S, Nyfeler B., Free PMC Article

    10/3/2020
    MiR-338-5p induces migration, invasion and metastasis of CRC in part through PIK3C3-related autophagy pathway. The miR-338-5p/PIK3C3 ratio may become a prognostic biomarker for CRC patients.

    MiR-338-5p promotes metastasis of colorectal cancer by inhibition of phosphatidylinositol 3-kinase, catalytic subunit type 3-mediated autophagy pathway.
    Chu CA, Lee CT, Lee JC, Wang YW, Huang CT, Lan SH, Lin PC, Lin BW, Tian YF, Liu HS, Chow NH., Free PMC Article

    11/30/2019
    ULK1 O-GlcNAcylation is crucial for binding and phosphorylation of ATG14L, allowing the activation of lipid kinase VPS34.

    ULK1 O-GlcNAcylation Is Crucial for Activating VPS34 via ATG14L during Autophagy Initiation.
    Pyo KE, Kim CR, Lee M, Kim JS, Kim KI, Baek SH.

    11/16/2019
    Ribophagic flux was not induced upon inhibition of translational elongation or nascent chain uncoupling, but was induced in a comparatively selective manner under proteotoxic stress induced by arsenite (10) or chromosome mis-segregation (11) , dependent upon VPS34 and ATG8 conjugation

    Systematic analysis of ribophagy in human cells reveals bystander flux during selective autophagy.
    An H, Harper JW., Free PMC Article

    04/13/2019
    Vps34 stimulates tumor development mainly through PKC-delta- activation of p62.

    VPS34 stimulation of p62 phosphorylation for cancer progression.
    Jiang X, Bao Y, Liu H, Kou X, Zhang Z, Sun F, Qian Z, Lin Z, Li X, Liu X, Jiang L, Yang Y., Free PMC Article

    12/23/2017
    Here we show that a putative fifth subunit, nuclear receptor binding factor 2 (NRBF2), is a tightly bound component of the class III phosphatidylinositol 3-kinase complex I that profoundly affects its activity and architecture. NRBF2 is a homodimer and drives the dimerization of the larger PI3KC3-C1 complex, with implications for the higher-order organization of the preautophagosomal structure.

    Dynamics and architecture of the NRBF2-containing phosphatidylinositol 3-kinase complex I of autophagy.
    Young LN, Cho K, Lawrence R, Zoncu R, Hurley JH., Free PMC Article

    12/2/2017
    This study reveals NRBF2 as a critical molecular switch of PtdIns3K and autophagy activation, and its on/off state is precisely controlled by MTORC1 through phosphorylation.

    MTORC1-mediated NRBF2 phosphorylation functions as a switch for the class III PtdIns3K and autophagy.
    Ma X, Zhang S, He L, Rong Y, Brier LW, Sun Q, Liu R, Fan W, Chen S, Yue Z, Kim J, Guan KL, Li D, Zhong Q., Free PMC Article

    11/26/2017
    Atg38 and its human ortholog NRBF2, accessory components of complex I consisting of Vps15-Vps34-Vps30/Atg6-Atg14 (yeast) and PIK3R4/VPS15-PIK3C3/VPS34-BECN1/Beclin 1-ATG14 (human), were characterized.

    Characterization of Atg38 and NRBF2, a fifth subunit of the autophagic Vps34/PIK3C3 complex.
    Ohashi Y, Soler N, García Ortegón M, Zhang L, Kirsten ML, Perisic O, Masson GR, Burke JE, Jakobi AJ, Apostolakis AA, Johnson CM, Ohashi M, Ktistakis NT, Sachse C, Williams RL., Free PMC Article

    11/18/2017
    p300-dependent VPS34 acetylation/deacetylation is the physiological key to VPS34 activation, which controls the initiation of canonical autophagy and of non-canonical autophagy in which the upstream kinases of VPS34 can be bypassed.

    VPS34 Acetylation Controls Its Lipid Kinase Activity and the Initiation of Canonical and Non-canonical Autophagy.
    Su H, Yang F, Wang Q, Shen Q, Huang J, Peng C, Zhang Y, Wan W, Wong CCL, Sun Q, Wang F, Zhou T, Liu W.

    10/14/2017
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