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    MAPK3 mitogen-activated protein kinase 3 [ Homo sapiens (human) ]

    Gene ID: 5595, updated on 2-Nov-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    MAZ promotes thyroid cancer progression by driving transcriptional reprogram and enhancing ERK1/2 activation.

    MAZ promotes thyroid cancer progression by driving transcriptional reprogram and enhancing ERK1/2 activation.
    Zeng J, Zhang L, Huang L, Yu X, Han L, Zheng Y, Wang T, Zhang N, Yang M.

    09/23/2024
    Exportin 1 governs the immunosuppressive functions of myeloid-derived suppressor cells in tumors through ERK1/2 nuclear export.

    Exportin 1 governs the immunosuppressive functions of myeloid-derived suppressor cells in tumors through ERK1/2 nuclear export.
    Daneshmandi S, Yan Q, Choi JE, Katsuta E, MacDonald CR, Goruganthu M, Roberts N, Repasky EA, Singh PK, Attwood K, Wang J, Landesman Y, McCarthy PL, Mohammadpour H.,

    09/10/2024
    Deubiquitination of CIB1 by USP14 promotes lenvatinib resistance via the PAK1-ERK1/2 axis in hepatocellular carcinoma.

    Deubiquitination of CIB1 by USP14 promotes lenvatinib resistance via the PAK1-ERK1/2 axis in hepatocellular carcinoma.
    Xu MH, Zheng YM, Liang BG, Xu WX, Cao J, Wang P, Dong ZY, Zhou CH, Sun HC, Ren N, Ke AW, Shen YH., Free PMC Article

    07/18/2024
    Ferroptosis-related gene MAPK3 is associated with the neurological outcome after cardiac arrest.

    Ferroptosis-related gene MAPK3 is associated with the neurological outcome after cardiac arrest.
    Hou HX, Pang L, Zhao L, Xing J., Free PMC Article

    07/2/2024
    Ciliogenesis-associated Kinase 1 Promotes Breast Cancer Cell Proliferation and Chemoresistance via Phosphorylating ERK1.

    Ciliogenesis-associated Kinase 1 Promotes Breast Cancer Cell Proliferation and Chemoresistance via Phosphorylating ERK1.
    He Y, Zhang X, Pan W, Zhang J, Zhu W, Zhang J, Shi J., Free PMC Article

    06/13/2024
    ALOX15B controls macrophage cholesterol homeostasis via lipid peroxidation, ERK1/2 and SREBP2.

    ALOX15B controls macrophage cholesterol homeostasis via lipid peroxidation, ERK1/2 and SREBP2.
    Benatzy Y, Palmer MA, Lütjohann D, Ohno RI, Kampschulte N, Schebb NH, Fuhrmann DC, Snodgrass RG, Brüne B., Free PMC Article

    05/28/2024
    PP4R1 promotes glycolysis and gallbladder cancer progression through facilitating ERK1/2 mediated PKM2 nuclear translocation.

    PP4R1 promotes glycolysis and gallbladder cancer progression through facilitating ERK1/2 mediated PKM2 nuclear translocation.
    He Z, Zhong Y, Lv T, Wang J, Jin Y, Li F, Hu H.

    03/19/2024
    AKAP2-anchored extracellular signal-regulated kinase 1 (ERK1) regulates cardiac myofibroblast migration.

    AKAP2-anchored extracellular signal-regulated kinase 1 (ERK1) regulates cardiac myofibroblast migration.
    Delaunay M, Paterek A, Gautschi I, Scherler G, Diviani D.

    03/5/2024
    LncNFYB promotes the proliferation of rheumatoid arthritis fibroblast-like synoviocytes via LncNFYB/ANXA2/ERK1/2 axis.

    LncNFYB promotes the proliferation of rheumatoid arthritis fibroblast-like synoviocytes via LncNFYB/ANXA2/ERK1/2 axis.
    Xiao S, Ouyang Q, Feng Y, Lu X, Han Y, Ren H, Huang Q, Zhao J, Xiao C, Yang M., Free PMC Article

    02/27/2024
    Progestins and breast cancer hallmarks: The role of the ERK1/2 and JNK pathways in estrogen receptor positive breast cancer cells.

    Progestins and breast cancer hallmarks: The role of the ERK1/2 and JNK pathways in estrogen receptor positive breast cancer cells.
    Louw-du Toit R, Simons M, Africander D.

    02/5/2024
    Mir-142-3P regulates MAPK protein family by inhibiting 14-3-3eta to enhance bone marrow mesenchymal stem cells osteogenesis.

    Mir-142-3P regulates MAPK protein family by inhibiting 14-3-3η to enhance bone marrow mesenchymal stem cells osteogenesis.
    Liu YQ, Xu YC, Shuai ZW., Free PMC Article

    01/3/2024
    The complex impact of cancer-related missense mutations on the stability and on the biophysical and biochemical properties of MAPK1 and MAPK3 somatic variants.

    The complex impact of cancer-related missense mutations on the stability and on the biophysical and biochemical properties of MAPK1 and MAPK3 somatic variants.
    Petrosino M, Novak L, Pasquo A, Turina P, Capriotti E, Minicozzi V, Consalvi V, Chiaraluce R., Free PMC Article

    11/1/2023
    Nuclear respiratory factor 1 drives hepatocellular carcinoma progression by activating LPCAT1-ERK1/2-CREB axis.

    Nuclear respiratory factor 1 drives hepatocellular carcinoma progression by activating LPCAT1-ERK1/2-CREB axis.
    Liu R, Yin C, Zhao P, Guo B, Ke W, Zheng X, Xie D, Wang Y, Wang G, Jia Y, Gao Y, Hu W, Liu GL, Song Z., Free PMC Article

    10/28/2023
    Redundant roles of extra-cellular signal-regulated kinase (ERK) 1 and 2 in the G1-S transition and etoposide-induced G2/M checkpoint in HCT116 cells.

    Redundant roles of extra-cellular signal-regulated kinase (ERK) 1 and 2 in the G1-S transition and etoposide-induced G2/M checkpoint in HCT116 cells.
    Erdenebaatar P, Gunarta IK, Suzuki R, Odongoo R, Fujii T, Fukunaga R, Kanemaki MT, Yoshioka K.

    10/25/2023
    A conserved arginine within the alphaC-helix of Erk1/2 is a latch of autoactivation and of oncogenic capabilities.

    A conserved arginine within the αC-helix of Erk1/2 is a latch of autoactivation and of oncogenic capabilities.
    Soudah N, Baskin A, Smorodinsky-Atias K, Beenstock J, Ganon Y, Hayouka R, Aboraya M, Livnah O, Ilouz R, Engelberg D., Free PMC Article

    10/4/2023
    Pathologically high intraocular pressure induces mitochondrial dysfunction through Drp1 and leads to retinal ganglion cell PANoptosis in glaucoma.

    Pathologically high intraocular pressure induces mitochondrial dysfunction through Drp1 and leads to retinal ganglion cell PANoptosis in glaucoma.
    Zeng Z, You M, Fan C, Rong R, Li H, Xia X., Free PMC Article

    05/28/2023
    Reduced G protein signaling despite impaired internalization and beta-arrestin recruitment in patients carrying a CXCR4Leu317fsX3 mutation causing WHIM syndrome.

    Reduced G protein signaling despite impaired internalization and β-arrestin recruitment in patients carrying a CXCR4Leu317fsX3 mutation causing WHIM syndrome.
    Kumar R, Milanesi S, Szpakowska M, Dotta L, Di Silvestre D, Trotta AM, Bello AM, Giacomelli M, Benedito M, Azevedo J, Pereira A, Cortesao E, Vacchini A, Castagna A, Pinelli M, Moratto D, Bonecchi R, Locati M, Scala S, Chevigné A, Borroni EM, Badolato R., Free PMC Article

    03/10/2023
    CircPDIA4 Induces Gastric Cancer Progression by Promoting ERK1/2 Activation and Enhancing Biogenesis of Oncogenic circRNAs.

    CircPDIA4 Induces Gastric Cancer Progression by Promoting ERK1/2 Activation and Enhancing Biogenesis of Oncogenic circRNAs.
    Shen Y, Zhang N, Chai J, Wang T, Ma C, Han L, Yang M.

    03/7/2023
    Role of kisspeptin in decidualization and unexplained recurrent spontaneous abortion via the ERK1/2 signalling pathway.

    Role of kisspeptin in decidualization and unexplained recurrent spontaneous abortion via the ERK1/2 signalling pathway.
    Zhang S, Xiao Y, Wang Y, Qian C, Zhang R, Liu J, Wang Q, Zhang H.

    02/26/2023
    MTHFD2 suppresses glioblastoma progression via the inhibition of ERK1/2 phosphorylation.

    MTHFD2 suppresses glioblastoma progression via the inhibition of ERK1/2 phosphorylation.
    Huang M, Xue J, Chen Z, Zhou X, Chen M, Sun J, Xu Z, Wang S, Xu H, Du Z, Liu M.

    02/11/2023
    A-Kinase Anchor Protein 95 Is Involved in ERK1/2-Elk-1 Signal Transduction in Colon Cancer.

    A-Kinase Anchor Protein 95 Is Involved in ERK1/2-Elk-1 Signal Transduction in Colon Cancer.
    Kong X, An P, Xu J, Liu W, Lin F, Yang Y., Free PMC Article

    02/4/2023
    NONO regulates multiple cytokine production in sepsis via the ERK1/2 signaling pathway.

    NONO regulates multiple cytokine production in sepsis via the ERK1/2 signaling pathway.
    Niu Y, Xu G, Zhu S, Wei X, Wu C, Zhang R, Chen C, Yan L, Luo H, Deng S, Wu W, Li Y, Liu M, Jiang Y, Zhang X.

    01/28/2023
    Tumor Cell-Intrinsic BTLA Receptor Inhibits the Proliferation of Tumor Cells via ERK1/2.

    Tumor Cell-Intrinsic BTLA Receptor Inhibits the Proliferation of Tumor Cells via ERK1/2.
    Cheng TY, Liu YJ, Yan H, Xi YB, Duan LQ, Wang Y, Zhang TT, Gu YM, Wang XD, Wu CX, Gao S., Free PMC Article

    01/14/2023
    Elevated Notch-1 expression promotes the lymph node metastasis of gastric cancer and the Notch-1-PTEN-ERK1/2 signalling axis promotes the progression of gastric cancer.

    Elevated Notch-1 expression promotes the lymph node metastasis of gastric cancer and the Notch-1-PTEN-ERK1/2 signalling axis promotes the progression of gastric cancer.
    Ma H, Li N, Mo Z.

    10/1/2022
    The role of ERK-1 and ERK-2 gene polymorphisms in PCOS pathogenesis.

    The role of ERK-1 and ERK-2 gene polymorphisms in PCOS pathogenesis.
    Guney G, Taşkın MI, Sener N, Tolu E, Dodurga Y, Elmas L, Cetin O, Sarigul C., Free PMC Article

    07/9/2022
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