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    UBXN1 UBX domain protein 1 [ Homo sapiens (human) ]

    Gene ID: 51035, updated on 10-Oct-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    UBXN1 promotes liver tumorigenesis by regulating mitochondrial homeostasis.

    UBXN1 promotes liver tumorigenesis by regulating mitochondrial homeostasis.
    Jiao K, Xu G, Liu Y, Yang Z, Xiang L, Chen Z, Xu C, Zuo Y, Wu Z, Zheng N, Xu W, Zhang L, Liu Y., Free PMC Article

    05/29/2024
    YTHDF2 facilitates UBXN1 mRNA decay by recognizing METTL3-mediated m(6)A modification to activate NF-kappaB and promote the malignant progression of glioma.

    YTHDF2 facilitates UBXN1 mRNA decay by recognizing METTL3-mediated m(6)A modification to activate NF-κB and promote the malignant progression of glioma.
    Chai RC, Chang YZ, Chang X, Pang B, An SY, Zhang KN, Chang YH, Jiang T, Wang YZ., Free PMC Article

    11/6/2021
    LncRNA PRADX-mediated recruitment of PRC2/DDX5 complex suppresses UBXN1 expression and activates NF-kappaB activity, promoting tumorigenesis.

    LncRNA PRADX-mediated recruitment of PRC2/DDX5 complex suppresses UBXN1 expression and activates NF-κB activity, promoting tumorigenesis.
    Li Y, Liu X, Cui X, Tan Y, Wang Q, Wang Y, Xu C, Fang C, Kang C., Free PMC Article

    07/31/2021
    Our results identify how VCP is specifically targeted to ubiquitylated substrates in the BAG6 triage pathway and suggest that the degradation of ubiquitylated clients by the proteasome is reliant on the association of UBXN1 with ubiquitylated substrates and the catalytic activity of VCP.

    The VCP-UBXN1 Complex Mediates Triage of Ubiquitylated Cytosolic Proteins Bound to the BAG6 Complex.
    Ganji R, Mukkavalli S, Somanji F, Raman M., Free PMC Article

    06/29/2019
    The ability of UBXN1 and other family members to negatively regulate the NFkappaB pathway may be important for dampening the host immune response in disease processes and also re-activating quiescent HIV from latent viral reservoirs in chronically infected individuals

    Multiple UBXN family members inhibit retrovirus and lentivirus production and canonical NFκΒ signaling by stabilizing IκBα.
    Hu Y, O'Boyle K, Auer J, Raju S, You F, Wang P, Fikrig E, Sutton RE., Free PMC Article

    08/5/2017
    p47 promotes, whereas SASK1 delays the degradation of a single ERAD substrate, alpha-TCR. Additionally, we found that SAKS1 selectively inhibits the degradation of ERAD substrates without affecting cytosolic proteasomal substrates.

    The opposite role of two UBA-UBX containing proteins, p47 and SAKS1 in the degradation of a single ERAD substrate, α-TCR.
    Park ES, Yoo YJ, Elangovan M.

    02/18/2017
    UBXN1 is a negative regulator of NF-kappaB signaling.

    Ubiquitin-associated domain-containing ubiquitin regulatory X (UBX) protein UBXN1 is a negative regulator of nuclear factor κB (NF-κB) signaling.
    Wang YB, Tan B, Mu R, Chang Y, Wu M, Tu HQ, Zhang YC, Guo SS, Qin XH, Li T, Li WH, Li AL, Zhang XM, Li HY., Free PMC Article

    06/20/2015
    UBXN1 is induced and recruited to MAVS after virus infection, serving as a brake to prevent excessive RLR signaling, most likely at a late stage of infection.

    UBXN1 interferes with Rig-I-like receptor-mediated antiviral immune response by targeting MAVS.
    Wang P, Yang L, Cheng G, Yang G, Xu Z, You F, Sun Q, Lin R, Fikrig E, Sutton RE., Free PMC Article

    11/16/2013
    SAKS1 inhibits protein degradation mediated by p97 complexes in the cytosol with a component of the mechanism being the ability to shield polyubiquitin chains from ubiquitin-processing factors.

    The UBX protein SAKS1 negatively regulates endoplasmic reticulum-associated degradation and p97-dependent degradation.
    LaLonde DP, Bretscher A., Free PMC Article

    03/26/2011
    Data suggest that UBXN1 regulates the enzymatic function of BRCA1 in a manner that is dependent on its ubiquitination status.

    The UBXN1 protein associates with autoubiquitinated forms of the BRCA1 tumor suppressor and inhibits its enzymatic function.
    Wu-Baer F, Ludwig T, Baer R., Free PMC Article

    06/14/2010
    Specific interaction of rat protein 2B28 with rat Homer2 may play a role in regulation of protein degradation by ubiquitin-proteasome systems and that this function may be specific to Homer2 proteins among Homer family proteins.

    A novel protein specifically interacting with Homer2 regulates ubiquitin-proteasome systems.
    Ishibashi T, Ogawa S, Hashiguchi Y, Inoue Y, Udo H, Ohzono H, Kato A, Minakami R, Sugiyama H.

    01/21/2010
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