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    ZBP1 Z-DNA binding protein 1 [ Homo sapiens (human) ]

    Gene ID: 81030, updated on 3-Apr-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    The innovative checkpoint inhibitors of lung adenocarcinoma, cg09897064 methylation and ZBP1 expression reduction, have implications for macrophage polarization and tumor growth in lung cancer.

    The innovative checkpoint inhibitors of lung adenocarcinoma, cg09897064 methylation and ZBP1 expression reduction, have implications for macrophage polarization and tumor growth in lung cancer.
    Wang A, Zheng WS, Luo Z, Bai L, Zhang S., Free PMC Article

    03/21/2024
    Bile acid-induced IRF3 phosphorylation mediates cell death, inflammatory responses, and fibrosis in cholestasis-induced liver and kidney injury via regulation of ZBP1.

    Bile acid-induced IRF3 phosphorylation mediates cell death, inflammatory responses, and fibrosis in cholestasis-induced liver and kidney injury via regulation of ZBP1.
    Zhuang Y, Ortega-Ribera M, Thevkar Nagesh P, Joshi R, Huang H, Wang Y, Zivny A, Mehta J, Parikh SM, Szabo G.,

    03/20/2024
    Heartbreakers: innate sensors ZBP1 and cGAS linked to cardiotoxicity.

    Heartbreakers: innate sensors ZBP1 and cGAS linked to cardiotoxicity.
    Chen W, Kanneganti TD.,

    12/22/2023
    PANoptosome signaling and therapeutic implications in infection: central role for ZBP1 to activate the inflammasome and PANoptosis.

    PANoptosome signaling and therapeutic implications in infection: central role for ZBP1 to activate the inflammasome and PANoptosis.
    Karki R, Kanneganti TD.,

    08/10/2023
    Z-form nucleic acid-binding protein 1 (ZBP1) as a sensor of viral and cellular Z-RNAs: walking the razor's edge.

    Z-form nucleic acid-binding protein 1 (ZBP1) as a sensor of viral and cellular Z-RNAs: walking the razor's edge.
    DeAntoneo C, Herbert A, Balachandran S.,

    08/9/2023
    ADAR1 and ZBP1 in innate immunity, cell death, and disease.

    ADAR1 and ZBP1 in innate immunity, cell death, and disease.
    Karki R, Kanneganti TD., Free PMC Article

    03/2/2023
    Telomere-to-mitochondria signalling by ZBP1 mediates replicative crisis.

    Telomere-to-mitochondria signalling by ZBP1 mediates replicative crisis.
    Nassour J, Aguiar LG, Correia A, Schmidt TT, Mainz L, Przetocka S, Haggblom C, Tadepalle N, Williams A, Shokhirev MN, Akincilar SC, Tergaonkar V, Shadel GS, Karlseder J., Free PMC Article

    02/25/2023
    ZBP1-Mediated Necroptosis: Mechanisms and Therapeutic Implications.

    ZBP1-Mediated Necroptosis: Mechanisms and Therapeutic Implications.
    Chen XY, Dai YH, Wan XX, Hu XM, Zhao WJ, Ban XX, Wan H, Huang K, Zhang Q, Xiong K., Free PMC Article

    02/11/2023
    Fusobacterium nucleatum triggers proinflammatory cell death via Z-DNA binding protein 1 in apical periodontitis.

    Fusobacterium nucleatum triggers proinflammatory cell death via Z-DNA binding protein 1 in apical periodontitis.
    Liu H, Liu Y, Fan W, Fan B., Free PMC Article

    12/31/2022
    Human ZBP1 induces cell death-independent inflammatory signaling via RIPK3 and RIPK1.

    Human ZBP1 induces cell death-independent inflammatory signaling via RIPK3 and RIPK1.
    Peng R, Wang CK, Wang-Kan X, Idorn M, Kjaer M, Zhou FY, Fiil BK, Timmermann F, Orozco SL, McCarthy J, Leung CS, Lu X, Bagola K, Rehwinkel J, Oberst A, Maelfait J, Paludan SR, Gyrd-Hansen M., Free PMC Article

    12/24/2022
    Z-DNA/RNA Binding Protein 1 Senses Mitochondrial DNA to Induce Receptor-Interacting Protein Kinase-3/Mixed Lineage Kinase Domain-Like-Driven Necroptosis in Developmental Sevoflurane Neurotoxicity.

    Z-DNA/RNA Binding Protein 1 Senses Mitochondrial DNA to Induce Receptor-Interacting Protein Kinase-3/Mixed Lineage Kinase Domain-Like-Driven Necroptosis in Developmental Sevoflurane Neurotoxicity.
    Wang WY, Yi WQ, Liu YS, Hu QY, Qian SJ, Liu JT, Mao H, Cai F, Yang HL.

    12/24/2022
    ADAR1 prevents autoinflammation by suppressing spontaneous ZBP1 activation.

    ADAR1 prevents autoinflammation by suppressing spontaneous ZBP1 activation.
    de Reuver R, Verdonck S, Dierick E, Nemegeer J, Hessmann E, Ahmad S, Jans M, Blancke G, Van Nieuwerburgh F, Botzki A, Vereecke L, van Loo G, Declercq W, Hur S, Vandenabeele P, Maelfait J.

    08/6/2022
    ADAR1 masks the cancer immunotherapeutic promise of ZBP1-driven necroptosis.

    ADAR1 masks the cancer immunotherapeutic promise of ZBP1-driven necroptosis.
    Zhang T, Yin C, Fedorov A, Qiao L, Bao H, Beknazarov N, Wang S, Gautam A, Williams RM, Crawford JC, Peri S, Studitsky V, Beg AA, Thomas PG, Walkley C, Xu Y, Poptsova M, Herbert A, Balachandran S., Free PMC Article

    07/2/2022
    Oxidative stress induces Z-DNA-binding protein 1-dependent activation of microglia via mtDNA released from retinal pigment epithelial cells.

    Oxidative stress induces Z-DNA-binding protein 1-dependent activation of microglia via mtDNA released from retinal pigment epithelial cells.
    Saada J, McAuley RJ, Marcatti M, Tang TZ, Motamedi M, Szczesny B., Free PMC Article

    05/21/2022
    Z-DNA binding protein 1 promotes heatstroke-induced cell death.

    Z-DNA binding protein 1 promotes heatstroke-induced cell death.
    Yuan F, Cai J, Wu J, Tang Y, Zhao K, Liang F, Li F, Yang X, He Z, Billiar TR, Wang H, Su L, Lu B.

    05/14/2022
    TRIM34 modulates influenza virus-activated programmed cell death by targeting Z-DNA-binding protein 1 for K63-linked polyubiquitination.

    TRIM34 modulates influenza virus-activated programmed cell death by targeting Z-DNA-binding protein 1 for K63-linked polyubiquitination.
    Wang X, Xiong J, Zhou D, Zhang S, Wang L, Tian Q, Li C, Liu J, Wu Y, Li J, Wang J., Free PMC Article

    04/30/2022
    The innate sensor ZBP1-IRF3 axis regulates cell proliferation in multiple myeloma.

    The innate sensor ZBP1-IRF3 axis regulates cell proliferation in multiple myeloma.
    Ponnusamy K, Tzioni MM, Begum M, Robinson ME, Caputo VS, Katsarou A, Trasanidis N, Xiao X, Kostopoulos IV, Iskander D, Roberts I, Trivedi P, Auner HW, Naresh K, Chaidos A, Karadimitris A., Free PMC Article

    04/16/2022
    Viral Z-RNA triggers ZBP1-dependent cell death.

    Viral Z-RNA triggers ZBP1-dependent cell death.
    Balachandran S, Mocarski ES., Free PMC Article

    02/5/2022
    Vaccinia virus E3 prevents sensing of Z-RNA to block ZBP1-dependent necroptosis.

    Vaccinia virus E3 prevents sensing of Z-RNA to block ZBP1-dependent necroptosis.
    Koehler H, Cotsmire S, Zhang T, Balachandran S, Upton JW, Langland J, Kalman D, Jacobs BL, Mocarski ES., Free PMC Article

    12/11/2021
    AIM2 forms a complex with pyrin and ZBP1 to drive PANoptosis and host defence.

    AIM2 forms a complex with pyrin and ZBP1 to drive PANoptosis and host defence.
    Lee S, Karki R, Wang Y, Nguyen LN, Kalathur RC, Kanneganti TD., Free PMC Article

    09/25/2021
    Enrichment of Zalpha domains at cytoplasmic stress granules is due to their innate ability to bind to nucleic acids.

    Enrichment of Zα domains at cytoplasmic stress granules is due to their innate ability to bind to nucleic acids.
    Gabriel L, Srinivasan B, Kuś K, Mata JF, João Amorim M, Jansen LET, Athanasiadis A.

    09/4/2021
    ZBP1 not RIPK1 mediates tumor necroptosis in breast cancer.

    ZBP1 not RIPK1 mediates tumor necroptosis in breast cancer.
    Baik JY, Liu Z, Jiao D, Kwon HJ, Yan J, Kadigamuwa C, Choe M, Lake R, Kruhlak M, Tandon M, Cai Z, Choksi S, Liu ZG., Free PMC Article

    06/5/2021
    ZBP1 promotes fungi-induced inflammasome activation and pyroptosis, apoptosis, and necroptosis (PANoptosis).

    ZBP1 promotes fungi-induced inflammasome activation and pyroptosis, apoptosis, and necroptosis (PANoptosis).
    Banoth B, Tuladhar S, Karki R, Sharma BR, Briard B, Kesavardhana S, Burton A, Kanneganti TD., Free PMC Article

    03/28/2021
    this paper reviews the history and emergence of ZBP1 as a pathogen sensor and a central regulator of cell death and inflammatory responses

    ZBP1: Innate Sensor Regulating Cell Death and Inflammation.
    Kuriakose T, Kanneganti TD., Free PMC Article

    11/10/2018
    PUMA promotes the cytosolic release of mitochondrial DNA and activation of the DNA sensors DAI/Zbp1 and STING, leading to enhanced RIP3 and MLKL phosphorylation in a positive feedback loop.

    PUMA amplifies necroptosis signaling by activating cytosolic DNA sensors.
    Chen D, Tong J, Yang L, Wei L, Stolz DB, Yu J, Zhang J, Zhang L., Free PMC Article

    10/13/2018
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