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    UBE3C ubiquitin protein ligase E3C [ Homo sapiens (human) ]

    Gene ID: 9690, updated on 27-Nov-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    UBE3C restricts EV-A71 replication by ubiquitination-dependent degradation of 2C.

    UBE3C restricts EV-A71 replication by ubiquitination-dependent degradation of 2C.
    Cui B, Yang G, Yan H, Wu S, Wang K, Wang H, Li Y., Free PMC Article

    10/25/2024
    Novel gene-intergenic fusion involving ubiquitin E3 ligase UBE3C causes distal hereditary motor neuropathy.

    Novel gene-intergenic fusion involving ubiquitin E3 ligase UBE3C causes distal hereditary motor neuropathy.
    Cutrupi AN, Narayanan RK, Perez-Siles G, Grosz BR, Lai K, Boyling A, Ellis M, Lin RCY, Neumann B, Mao D, Uesugi M, Nicholson GA, Vucic S, Saporta MA, Kennerson ML., Free PMC Article

    03/6/2023
    Biallelic variants in HECT E3 paralogs, HECTD4 and UBE3C, encoding ubiquitin ligases cause neurodevelopmental disorders that overlap with Angelman syndrome.

    Biallelic variants in HECT E3 paralogs, HECTD4 and UBE3C, encoding ubiquitin ligases cause neurodevelopmental disorders that overlap with Angelman syndrome.
    Faqeih EA, Alghamdi MA, Almahroos MA, Alharby E, Almuntashri M, Alshangiti AM, Clément P, Calame DG, Qebibo L, Burglen L, Doco-Fenzy M, Mastrangelo M, Torella A, Manti F, Nigro V, Alban Z, Alharbi GS, Hashmi JA, Alraddadi R, Alamri R, Mitani T, Magalie B, Coban-Akdemir Z, Geckinli BB, Pehlivan D, Romito A, Karageorgou V, Martini J, Colin E, Bonneau D, Bertoli-Avella A, Lupski JR, Pastore A, Peake RWA, Dallol A, Alfadhel M, Almontashiri NAM.

    02/28/2023
    Circular RNA circPOLR2A promotes clear cell renal cell carcinoma progression by facilitating the UBE3C-induced ubiquitination of PEBP1 and, thereby, activating the ERK signaling pathway.

    Circular RNA circPOLR2A promotes clear cell renal cell carcinoma progression by facilitating the UBE3C-induced ubiquitination of PEBP1 and, thereby, activating the ERK signaling pathway.
    Xu Z, Chen S, Liu R, Chen H, Xu B, Xu W, Chen M., Free PMC Article

    07/30/2022
    UBE3C promotes proliferation and inhibits apoptosis by activating the beta-catenin signaling via degradation of AXIN1 in gastric cancer.

    UBE3C promotes proliferation and inhibits apoptosis by activating the β-catenin signaling via degradation of AXIN1 in gastric cancer.
    Zhang Y, Xu J, Fu H, Wei Z, Yang D, Yan R.

    06/26/2021
    VPS34 K29/K48 branched ubiquitination governed by UBE3C and TRABID regulates autophagy, proteostasis and liver metabolism.

    VPS34 K29/K48 branched ubiquitination governed by UBE3C and TRABID regulates autophagy, proteostasis and liver metabolism.
    Chen YH, Huang TY, Lin YT, Lin SY, Li WH, Hsiao HJ, Yan RL, Tang HW, Shen ZQ, Chen GC, Wu KP, Tsai TF, Chen RH., Free PMC Article

    03/20/2021
    Crystal structure of HECT domain of UBE3C E3 ligase and its ubiquitination activity.

    Crystal structure of HECT domain of UBE3C E3 ligase and its ubiquitination activity.
    Singh S, Sivaraman J.

    10/24/2020
    Findings indicate that miR-30a-5p inhibits ubiquitin Protein ligase E3C (UBE3C) expression by directly targeting its 3' untranslated regions (3'-UTR).

    MiR-30a-5p/UBE3C axis regulates breast cancer cell proliferation and migration.
    Xiong J, Wei B, Ye Q, Liu W.

    07/11/2020
    Data suggest UBE3C-mediated AHNAK ubiquitination and degradation accompanied by subsequent blockage of p53 inhibition of stemness-related-gene transcription as a new posttranslational regulatory model describing maintenance of non-small-cell lung cancer (NSCLC) cell stemness. UBE3C knockdown increased p53 binding to the promoter regions inhibiting their transcription and preventing NSCLC tumorigenesis.

    Ubiquitin-protein ligase E3C maintains non-small-cell lung cancer stemness by targeting AHNAK-p53 complex.
    Gu J, Mao W, Ren W, Xu F, Zhu Q, Lu C, Lin Z, Zhang Z, Chu Y, Liu R, Ge D.

    11/9/2019
    miR-542-3p functioned as a tumor suppressor gene in regulating the epithelial-mesenchymal transition and metastasis of hepatocellular carcinoma via targeting UBE3C.

    MiR-542-3p inhibits metastasis and epithelial-mesenchymal transition of hepatocellular carcinoma by targeting UBE3C.
    Tao J, Liu Z, Wang Y, Wang L, Yao B, Li Q, Wang C, Tu K, Liu Q.

    05/5/2018
    Usp14 and Ube3c cycle together on and off proteasomes, and the presence of ubiquitinated substrates promotes their association. This mechanism enables proteasome activity to adapt to the supply of substrates.

    Ubiquitinated proteins promote the association of proteasomes with the deubiquitinating enzyme Usp14 and the ubiquitin ligase Ube3c.
    Kuo CL, Goldberg AL., Free PMC Article

    04/28/2018
    UBE3C promotes melanoma progression, possibly by inducing epithelial-mesenchymal transition in melanoma cells

    Ubiquitin ligase UBE3C promotes melanoma progression by increasing epithelial-mesenchymal transition in melanoma cells.
    Tang L, Yi XM, Chen J, Chen FJ, Lou W, Gao YL, Zhou J, Su LN, Xu X, Lu JQ, Ma J, Yu N, Ding YF., Free PMC Article

    12/16/2017
    Ectopic overexpression of UBE4A, but not UBE3C, in cells was downregulated in vitro migration and invasion in these cells. Cumulatively, our data reveals a novel post-translational regulatory mechanism of regulating ILEI1 expression, a protein required for metastatic progression in prostate cancer cells

    The ubiquitin ligase UBE4A inhibits prostate cancer progression by targeting interleukin-like EMT inducer (ILEI).
    Sun Y, Jia X, Gao Q, Liu X, Hou L.

    09/2/2017
    data reveal that high UBE3C expression contributes to glioma progression by ubiquitination and degradation of ANXA7, and thus presents a novel and promising target for glioma therapy.

    Ubiquitin-protein ligase E3C promotes glioma progression by mediating the ubiquitination and degrading of Annexin A7.
    Pan SJ, Zhan SK, Ji WZ, Pan YX, Liu W, Li DY, Huang P, Zhang XX, Cao CY, Zhang J, Bian LG, Sun B, Sun QF., Free PMC Article

    06/11/2016
    these observations suggest that UBE3C plays an important role in RCC development and progression, and UBE3C may be a novel target for prevention and treatment of ccRCC.

    UBE3C promotes growth and metastasis of renal cell carcinoma via activating Wnt/β-catenin pathway.
    Wen JL, Wen XF, Li RB, Jin YC, Wang XL, Zhou L, Chen HX., Free PMC Article

    01/16/2016
    UBE3C is a mutant candidate oncogene involved in tumor development and progression of hepatocellular carcinoma.

    Clinical significance of the ubiquitin ligase UBE3C in hepatocellular carcinoma revealed by exome sequencing.
    Jiang JH, Liu YF, Ke AW, Gu FM, Yu Y, Dai Z, Gao Q, Shi GM, Liao BY, Xie YH, Fan J, Huang XW, Zhou J.

    08/9/2014
    knockdown renders cells more susceptible to the Hsp90 inhibitor 17-AAG, suggesting that UBE3C protects against the harmful accumulation of protein fragments arising from incompletely degraded proteasome substrates.

    The E3 ubiquitin ligase UBE3C enhances proteasome processivity by ubiquitinating partially proteolyzed substrates.
    Chu BW, Kovary KM, Guillaume J, Chen LC, Teruel MN, Wandless TJ., Free PMC Article

    02/22/2014
    Our findings provide evidence that variations in UBE3C are potent genetic markers of nasal polyps development in Korean asthmatics.

    UBE3C genetic variations as potent markers of nasal polyps in Korean asthma patients.
    Pasaje CF, Kim JH, Park BL, Park JS, Uh ST, Kim MK, Park CS, Shin HD.

    03/24/2012
    negatively regulates type I interferon through ubiquitination of the transcription factors

    The ubiquitin E3 ligase RAUL negatively regulates type i interferon through ubiquitination of the transcription factors IRF7 and IRF3.
    Yu Y, Hayward GS., Free PMC Article

    05/14/2011
    gene polymorphism is associated with the risk of Aspirin-intolerant asthma

    Association analysis of UBE3C polymorphisms in Korean aspirin-intolerant asthmatic patients.
    Lee JS, Kim JH, Bae JS, Kim JY, Park TJ, Pasaje CF, Park BL, Cheong HS, Park JS, Uh ST, Kim MK, Choi IS, Cho SH, Choi BW, Park CS, Shin HD, Lee JS, Kim JH, Bae JS, Kim JY, Park TJ, Pasaje CF, Park BL, Cheong HS, Park JS, Uh ST, Kim MK, Choi IS, Cho SH, Choi BW, Park CS, Shin HD.

    02/26/2011
    Observational study of gene-disease association, gene-environment interaction, and pharmacogenomic / toxicogenomic. (HuGE Navigator)See all PubMed (2) articles

    Association analysis of UBE3C polymorphisms in Korean aspirin-intolerant asthmatic patients.
    Lee JS, Kim JH, Bae JS, Kim JY, Park TJ, Pasaje CF, Park BL, Cheong HS, Park JS, Uh ST, Kim MK, Choi IS, Cho SH, Choi BW, Park CS, Shin HD, Lee JS, Kim JH, Bae JS, Kim JY, Park TJ, Pasaje CF, Park BL, Cheong HS, Park JS, Uh ST, Kim MK, Choi IS, Cho SH, Choi BW, Park CS, Shin HD.

    Variation at the NFATC2 locus increases the risk of thiazolidinedione-induced edema in the Diabetes REduction Assessment with ramipril and rosiglitazone Medication (DREAM) study.
    Bailey SD, Xie C, Do R, Montpetit A, Diaz R, Mohan V, Keavney B, Yusuf S, Gerstein HC, Engert JC, Anand S, DREAM investigators.

    09/15/2010
    Observational study of gene-disease association. (HuGE Navigator)

    Gene-centric association signals for lipids and apolipoproteins identified via the HumanCVD BeadChip.
    Talmud PJ, Drenos F, Shah S, Shah T, Palmen J, Verzilli C, Gaunt TR, Pallas J, Lovering R, Li K, Casas JP, Sofat R, Kumari M, Rodriguez S, Johnson T, Newhouse SJ, Dominiczak A, Samani NJ, Caulfield M, Sever P, Stanton A, Shields DC, Padmanabhan S, Melander O, Hastie C, Delles C, Ebrahim S, Marmot MG, Smith GD, Lawlor DA, Munroe PB, Day IN, Kivimaki M, Whittaker J, Humphries SE, Hingorani AD, ASCOT investigators, NORDIL investigators, BRIGHT Consortium., Free PMC Article

    09/15/2010
    Observational study and genome-wide association study of gene-disease association, gene-environment interaction, and pharmacogenomic / toxicogenomic. (HuGE Navigator)

    A genomewide association study of citalopram response in major depressive disorder.
    Garriock HA, Kraft JB, Shyn SI, Peters EJ, Yokoyama JS, Jenkins GD, Reinalda MS, Slager SL, McGrath PJ, Hamilton SP., Free PMC Article

    12/2/2009
    TIP120B is a specific substrate of KIAA10; both are highly expressed in human skeletal muscle, suggesting that KIAA10 may regulate TIP120B homeostasis specifically in this tissue.

    Proteolytic targeting of transcriptional regulator TIP120B by a HECT domain E3 ligase.
    You J, Wang M, Aoki T, Tamura TA, Pickart CM.

    01/21/2010
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