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    FENDRR FOXF1 adjacent non-coding developmental regulatory RNA [ Homo sapiens (human) ]

    Gene ID: 400550, updated on 10-Dec-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    Long non-coding RNA FENDRR regulates proliferation, apoptosis and migration in high-glucose-induced human retinal endothelial cells via targeting miR-384/RHOA axis.

    Long non-coding RNA FENDRR regulates proliferation, apoptosis and migration in high-glucose-induced human retinal endothelial cells via targeting miR-384/RHOA axis.
    Gao R, Cao T, Liu Y.

    06/22/2023
    The Emerging Role of LncRNA FENDRR in Multiple Cancers: A Review.

    The Emerging Role of LncRNA FENDRR in Multiple Cancers: A Review.
    Fazaeli H, Sheikholeslami A, Ghasemian F, Amini E, Sheykhhasan M.

    06/8/2023
    An integrated analysis of the competing endogenous RNA network associated of prognosis of stage I lung adenocarcinoma.

    An integrated analysis of the competing endogenous RNA network associated of prognosis of stage I lung adenocarcinoma.
    Xu Y, Lin G, Liu Y, Lin X, Lin H, Guo Z, Xu Y, Lin Q, Chen S, Yang J, Zeng Y., Free PMC Article

    03/12/2022
    Long non-coding RNA FENDRR inhibits the stemenss of colorectal cancer cells through directly binding to Sox2 RNA.

    Long non-coding RNA FENDRR inhibits the stemenss of colorectal cancer cells through directly binding to Sox2 RNA.
    Zhao X, Wu J, Li Y, Ye F, Wang C., Free PMC Article

    02/19/2022
    Lung-specific distant enhancer cis regulates expression of FOXF1 and lncRNA FENDRR.

    Lung-specific distant enhancer cis regulates expression of FOXF1 and lncRNA FENDRR.
    Szafranski P, Gambin T, Karolak JA, Popek E, Stankiewicz P., Free PMC Article

    01/29/2022
    FENDRR Sponges miR-424-5p to Inhibit Cell Proliferation, Migration and Invasion in Colorectal Cancer.

    FENDRR Sponges miR-424-5p to Inhibit Cell Proliferation, Migration and Invasion in Colorectal Cancer.
    Cheng C, Li H, Zheng J, Xu J, Gao P, Wang J., Free PMC Article

    11/6/2021
    LncRNA FENDRR Expression Correlates with Tumor Immunogenicity.

    LncRNA FENDRR Expression Correlates with Tumor Immunogenicity.
    Munteanu MC, Sethuraman SN, Singh MP, Malayer J, Ranjan A., Free PMC Article

    09/25/2021
    Integrated Analysis of lncRNAs and mRNAs Identifies a Potential Driver lncRNA FENDRR in Lung Cancer in Xuanwei, China.

    Integrated Analysis of lncRNAs and mRNAs Identifies a Potential Driver lncRNA FENDRR in Lung Cancer in Xuanwei, China.
    Duan Y, Li WX, Wang Y, Zhao Y, Shen J, Deng CJ, Li Q, Chen R, Liu X, Zhang YL.

    09/25/2021
    Long Noncoding RNA FENDRR Inhibits Lung Fibroblast Proliferation via a Reduction of beta-Catenin.

    Long Noncoding RNA FENDRR Inhibits Lung Fibroblast Proliferation via a Reduction of β-Catenin.
    Senavirathna LK, Liang Y, Huang C, Yang X, Bamunuarachchi G, Xu D, Dang Q, Sivasami P, Vaddadi K, Munteanu MC, Hewawasam S, Cheresh P, Kamp DW, Liu L., Free PMC Article

    09/18/2021
    N-methyladenosine reader YTHDF2-mediated long noncoding RNA FENDRR degradation promotes cell proliferation in endometrioid endometrial carcinoma.

    N-methyladenosine reader YTHDF2-mediated long noncoding RNA FENDRR degradation promotes cell proliferation in endometrioid endometrial carcinoma.
    Shen J, Feng XP, Hu RB, Wang H, Wang YL, Qian JH, Zhou YX.

    08/21/2021
    FENDRR: A pivotal, cancer-related, long non-coding RNA.

    FENDRR: A pivotal, cancer-related, long non-coding RNA.
    Zheng Q, Zhang Q, Yu X, He Y, Guo W.

    07/24/2021
    LncRNA FENDRR Upregulation Promotes Hepatic Carcinoma Cells Apoptosis by Targeting miR-362-5p Via NPR3 and p38-MAPK Pathway.

    LncRNA FENDRR Upregulation Promotes Hepatic Carcinoma Cells Apoptosis by Targeting miR-362-5p Via NPR3 and p38-MAPK Pathway.
    Qian G, Jin X, Zhang L.

    07/17/2021
    LncRNA Fendrr inhibits hypoxia/reoxygenation-induced cardiomyocyte apoptosis by downregulating p53 expression.

    LncRNA Fendrr inhibits hypoxia/reoxygenation-induced cardiomyocyte apoptosis by downregulating p53 expression.
    Li X, Ni L, Wang W, Zong L, Yao B.

    05/29/2021
    Decreased long non-coding RNA lincFOXF1 indicates poor progression and promotes cell migration and metastasis in osteosarcoma.

    Decreased long non-coding RNA lincFOXF1 indicates poor progression and promotes cell migration and metastasis in osteosarcoma.
    Yang S, Chen J, Lv B, Zhang J, Li D, Huang M, Yuan L, Yin G., Free PMC Article

    05/8/2021
    Long non-coding RNA FENDRR regulates IFNgamma-induced M1 phenotype in macrophages.

    Long non-coding RNA FENDRR regulates IFNγ-induced M1 phenotype in macrophages.
    Munteanu MC, Huang C, Liang Y, Sathiaseelan R, Zeng X, Liu L., Free PMC Article

    01/16/2021
    Screening of significant biomarkers related with prognosis of liver cancer by lncRNA-associated ceRNAs analysis.

    Screening of significant biomarkers related with prognosis of liver cancer by lncRNA-associated ceRNAs analysis.
    He J, Zhao H, Deng D, Wang Y, Zhang X, Zhao H, Xu Z.

    12/19/2020
    FENDRR reduces tumor invasiveness in prostate cancer PC-3 cells by targeting CSNK1E.

    FENDRR reduces tumor invasiveness in prostate cancer PC-3 cells by targeting CSNK1E.
    Zhang YQ, Chen X, Fu CL, Zhang W, Zhang DL, Pang C, Liu M, Wang JY.

    10/10/2020
    FENDRR silences survivin via SETDB1-mediated H3K9 methylation, thereby represses cholangiocarcinoma cell proliferation, migration and invasion.

    LncRNA FENDRR represses proliferation, migration and invasion through suppression of survivin in cholangiocarcinoma cells.
    Qin X, Lu M, Zhou Y, Li G, Liu Z., Free PMC Article

    05/30/2020
    long noncoding RNA FENDRR suppressed the progression of non-small cell lung cancer via binding to miR-761 and regulating TIMP2 expression.

    LncRNA FENDRR suppresses the progression of NSCLC via regulating miR-761/TIMP2 axis.
    Zhang G, Wang Q, Zhang X, Ding Z, Liu R.

    02/15/2020
    Over-expression of FENDRR inhibited the malignant phenotypes of non-small cell lung carcinoma cells by binding competitively to miR-761.

    Long non-coding RNA FENDRR inhibits NSCLC cell growth and aggressiveness by sponging miR-761.
    Zhang MY, Zhang ZL, Cui HX, Wang RK, Fu L.

    01/18/2020
    lncRNAs MHRT, FENDRR and CARMEN show distinct expression profiles in hypertensive patients

    The long non-coding RNAs MHRT, FENDRR and CARMEN, their expression levels in peripheral blood mononuclear cells in patients with essential hypertension and their relation to heart hypertrophy.
    Kontaraki JE, Marketou ME, Kochiadakis GE, Maragkoudakis S, Konstantinou J, Vardas PE, Parthenakis FI.

    10/5/2019
    FENDRR attenuates NSCLC cell stemness through inhibiting the HuR/MDR1 axis

    Long non-coding RNA FENDRR attenuates the stemness of non-small cell lung cancer cells via decreasing multidrug resistance gene 1 (MDR1) expression through competitively binding with RNA binding protein HuR.
    Gong F, Dong D, Zhang T, Xu W.

    09/7/2019
    These findings suggested the CNVR_3425.1 of FENDRR to be a possibly predictive biomarker for the risk of lung cancer and chronic obstructive pulmonary disease

    A functional CNVR_3425.1 damping lincRNA FENDRR increases lifetime risk of lung cancer and COPD in Chinese.
    Yang L, Wu D, Chen J, Chen J, Qiu F, Li Y, Liu L, Cao Y, Yang B, Zhou Y, Lu J.

    11/3/2018
    FENDRR reduces prostate cancer malignancy by competitively binding miR-18a-5p with RUNX1.

    Long non-coding RNA FENDRR reduces prostate cancer malignancy by competitively binding miR-18a-5p with RUNX1.
    Zhang G, Han G, Zhang X, Yu Q, Li Z, Li Z, Li J.

    09/29/2018
    Results suggest that long noncoding RNA FOXF1-AS1 might regulate epithelial-mesenchymal transition (EMT), stemness and metastasis of non-small cell lung cancer (NSCLC) cells via EZH2, indicating it as a therapeutic target for future treatment of NSCLC.

    Loss of long noncoding RNA FOXF1-AS1 regulates epithelial-mesenchymal transition, stemness and metastasis of non-small cell lung cancer cells.
    Miao L, Huang Z, Zengli Z, Li H, Chen Q, Yao C, Cai H, Xiao Y, Xia H, Wang Y., Free PMC Article

    02/24/2018
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