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    MIR494 microRNA 494 [ Homo sapiens (human) ]

    Gene ID: 574452, updated on 17-Sep-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    lncRNA AGAP11 Suppresses Lung Adenocarcinoma Progression by miR-494-3p and Predicts Prognosis.

    lncRNA AGAP11 Suppresses Lung Adenocarcinoma Progression by miR-494-3p and Predicts Prognosis.
    He Y, Luan X, Lin Y, Dong C, Zhang J, Zhu Y.

    08/5/2024
    Exosomal circBBS2 inhibits ferroptosis by targeting miR-494 to activate SLC7A11 signaling in ischemic stroke.

    Exosomal circBBS2 inhibits ferroptosis by targeting miR-494 to activate SLC7A11 signaling in ischemic stroke.
    Hong T, Zhao T, He W, Xia J, Huang Q, Yang J, Gu W, Chen C, Zhang N, Liu Y, Feng J.

    08/25/2023
    MiRNA-494 induces trophoblast senescence by targeting SIRT1.

    MiRNA-494 induces trophoblast senescence by targeting SIRT1.
    Su S, Zhong L, Huang S, Deng L, Pang L.

    06/8/2023
    Spatiotemporal Coordination of RPE Cell Quality by Extracellular Vesicle miR-494-3p Via Competitive Interplays With SIRT3 or PTEN.

    Spatiotemporal Coordination of RPE Cell Quality by Extracellular Vesicle miR-494-3p Via Competitive Interplays With SIRT3 or PTEN.
    Hamuro J, Yamashita T, Otsuki Y, Hiramoto N, Adachi M, Miyatani T, Tanaka H, Ueno M, Kinoshita S, Sotozono C., Free PMC Article

    05/17/2023
    Cardiomyocyte-specific Peli1 contributes to the pressure overload-induced cardiac fibrosis through miR-494-3p-dependent exosomal communication.

    Cardiomyocyte-specific Peli1 contributes to the pressure overload-induced cardiac fibrosis through miR-494-3p-dependent exosomal communication.
    Tang C, Hou YX, Shi PX, Zhu CH, Lu X, Wang XL, Que LL, Zhu GQ, Liu L, Chen Q, Li CF, Xu Y, Li JT, Li YH.

    12/31/2022
    Down-regulation of BMAL1 by MiR-494-3p Promotes Hepatocellular Carcinoma Growth and Metastasis by Increasing GPAM-mediated Lipid Biosynthesis.

    Down-regulation of BMAL1 by MiR-494-3p Promotes Hepatocellular Carcinoma Growth and Metastasis by Increasing GPAM-mediated Lipid Biosynthesis.
    Yang Y, Yang T, Zhao Z, Zhang H, Yuan P, Wang G, Zhao Z, An J, Lyu Z, Xing J, Li J., Free PMC Article

    12/3/2022
    MicroRNA-494-3p facilitates the progression of bladder cancer by mediating the KLF9/RGS2 axis.

    MicroRNA-494-3p facilitates the progression of bladder cancer by mediating the KLF9/RGS2 axis.
    Xu XH, Sun JM, Chen XF, Zeng XY, Zhou HZ.

    11/12/2022
    Circular RNA hsa_circ_0000317 inhibits non-small cell lung cancer progression through regulating microRNA-494-3p/phosphatase and tensin homolog deleted on chromosome 10 axis.

    Circular RNA hsa_circ_0000317 inhibits non-small cell lung cancer progression through regulating microRNA-494-3p/phosphatase and tensin homolog deleted on chromosome 10 axis.
    Xia S, Zhang Z., Free PMC Article

    09/10/2022
    MiR-494 Inhibits the Proliferation, Migration and Invasion of Cervical Cancer Cells by Regulating LETMD1.

    MiR-494 Inhibits the Proliferation, Migration and Invasion of Cervical Cancer Cells by Regulating LETMD1.
    Wen N, Zhang J, Zhang Q.

    07/16/2022
    The regulating role of miR-494 on HCCR1 in cervical cancer cells.

    The regulating role of miR-494 on HCCR1 in cervical cancer cells.
    Zheng Z, Yang X, Yu Q, Li L, Qiao L.

    07/16/2022
    Hsa_circ_0007142 contributes to cisplatin resistance in esophageal squamous cell carcinoma via miR-494-3p/LASP1 axis.

    Hsa_circ_0007142 contributes to cisplatin resistance in esophageal squamous cell carcinoma via miR-494-3p/LASP1 axis.
    Chang N, Ge N, Zhao Y, Yang L, Qin W, Cui Y., Free PMC Article

    05/21/2022
    MicroRNA-494-3p Exacerbates Renal Epithelial Cell Dysfunction by Targeting SOCS6 under High Glucose Treatment.

    MicroRNA-494-3p Exacerbates Renal Epithelial Cell Dysfunction by Targeting SOCS6 under High Glucose Treatment.
    Xue X, Liu M, Wang Y, Yang Y, Li Z, Shi R, Miao Y.

    04/16/2022
    Circ_0000745 promotes acute lymphoblastic leukemia progression through mediating miR-494-3p/NET1 axis.

    Circ_0000745 promotes acute lymphoblastic leukemia progression through mediating miR-494-3p/NET1 axis.
    Yang X, Li Y, Zhang Y, Liu J.

    02/5/2022
    Histone Modifier Differentially Regulates Gene Expression and Unravels Survival Role of MicroRNA-494 in Jurkat Leukemia.

    Histone Modifier Differentially Regulates Gene Expression and Unravels Survival Role of MicroRNA-494 in Jurkat Leukemia.
    Jayaraman A, Zhou T, Jayaraman S.

    01/22/2022
    [miR-494 promotes islet beta cell proliferation, inhibits apoptosis and increases insulin secretion by activating Wnt/beta-catenin signaling pathway].

    [miR-494 promotes islet β cell proliferation, inhibits apoptosis and increases insulin secretion by activating Wnt/β-catenin signaling pathway].
    Song S, Yang Y, He J, Tang J.

    12/18/2021
    The Highlighted Roles of Metabolic and Cellular Response to Stress Pathways Engaged in Circulating hsa-miR-494-3p and hsa-miR-661 in Alzheimer's Disease.

    The Highlighted Roles of Metabolic and Cellular Response to Stress Pathways Engaged in Circulating hsa-miR-494-3p and hsa-miR-661 in Alzheimer's Disease.
    Hojati Z, Omidi F, Dehbashi M, Mohammad Soltani B., Free PMC Article

    12/11/2021
    Mitochondrial miRNA494-3p in extracellular vesicles participates in cellular interplay of iPS-Derived human retinal pigment epithelium with macrophages.

    Mitochondrial miRNA494-3p in extracellular vesicles participates in cellular interplay of iPS-Derived human retinal pigment epithelium with macrophages.
    Mukai A, Otsuki Y, Ito E, Fujita T, Ueno M, Maeda T, Kinoshita S, Sotozono C, Hamuro J.

    10/2/2021
    Hsa-miR-494-3p attenuates gene HtrA3 transcription to increase inflammatory response in hypoxia/reoxygenation HK2 Cells.

    Hsa-miR-494-3p attenuates gene HtrA3 transcription to increase inflammatory response in hypoxia/reoxygenation HK2 Cells.
    Gong Q, Shen ZM, Sheng Z, Jiang S, Ge SL., Free PMC Article

    10/2/2021
    LncRNA NNT-AS1 promote glioma cell proliferation and metastases through miR-494-3p/PRMT1 axis.

    LncRNA NNT-AS1 promote glioma cell proliferation and metastases through miR-494-3p/PRMT1 axis.
    Zheng D, Chen D, Lin F, Wang X, Lu L, Luo S, Chen J, Xu X., Free PMC Article

    09/4/2021
    Overexpression of PTEN regulated by miR-19b and miR-494 in the villous of recurrent spontaneous abortion patients.

    Overexpression of PTEN regulated by miR-19b and miR-494 in the villous of recurrent spontaneous abortion patients.
    Tian S, Yu J, Zhang Y, Bian Y, Ma J, Yan J.

    08/28/2021
    Circ_0081001 down-regulates miR-494-3p to enhance BACH1 expression and promotes osteosarcoma progression.

    Circ_0081001 down-regulates miR-494-3p to enhance BACH1 expression and promotes osteosarcoma progression.
    Liu S, Duan K, Zhang X, Cao X, Wang X, Meng F, Liu H, Xu B, Wang X., Free PMC Article

    07/31/2021
    Circular RNA circ_0081001 knockdown enhances methotrexate sensitivity in osteosarcoma cells by regulating miR-494-3p/TGM2 axis.

    Circular RNA circ_0081001 knockdown enhances methotrexate sensitivity in osteosarcoma cells by regulating miR-494-3p/TGM2 axis.
    Wei W, Ji L, Duan W, Zhu J., Free PMC Article

    07/17/2021
    Release of extracellular vesicle miR-494-3p by ARPE-19 cells with impaired mitochondria.

    Release of extracellular vesicle miR-494-3p by ARPE-19 cells with impaired mitochondria.
    Ahn JY, Datta S, Bandeira E, Cano M, Mallick E, Rai U, Powell B, Tian J, Witwer KW, Handa JT, Paulaitis ME.

    07/3/2021
    Inhibition of miR-494-3p alleviates oxidative stress-induced cell senescence and inflammation in the primary epithelial cells of COPD patients.

    Inhibition of miR-494-3p alleviates oxidative stress-induced cell senescence and inflammation in the primary epithelial cells of COPD patients.
    Zeng Q, Zeng J.

    06/26/2021
    Integrative bioinformatics analysis reveals miR-494 and its target genes as predictive biomarkers of trastuzumab-resistant breast cancer.

    Integrative bioinformatics analysis reveals miR-494 and its target genes as predictive biomarkers of trastuzumab-resistant breast cancer.
    Hermawan A, Putri H.

    02/13/2021
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