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    SQSTM1 sequestosome 1 [ Homo sapiens (human) ]

    Gene ID: 8878, updated on 7-Jul-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    Single-cell transcriptomics reveals the intra-tumoral heterogeneity and SQSTM1/P62 and Wnt/beta-catenin mediated epithelial to mesenchymal transition and stemness of triple-negative breast cancer.

    Single-cell transcriptomics reveals the intra-tumoral heterogeneity and SQSTM1/P62 and Wnt/β-catenin mediated epithelial to mesenchymal transition and stemness of triple-negative breast cancer.
    Shome R, Sen P, Sarkar S, Ghosh SS.

    05/29/2024
    Dual-specificity kinase DYRK3 phosphorylates p62 at the Thr-269 residue and promotes melanoma progression.

    Dual-specificity kinase DYRK3 phosphorylates p62 at the Thr-269 residue and promotes melanoma progression.
    Lee YH, Yoon AR, Yun CO, Chung KC., Free PMC Article

    05/13/2024
    Vaccinia virus subverts xenophagy through phosphorylation and nuclear targeting of p62.

    Vaccinia virus subverts xenophagy through phosphorylation and nuclear targeting of p62.
    Krause M, Samolej J, Yakimovich A, Kriston-Vizi J, Huttunen M, Lara-Reyna S, Frickel EM, Mercer J., Free PMC Article

    05/9/2024
    circRNA_SLC8A1 promotes the survival of mycobacterium tuberculosis in macrophages by upregulating expression of autophagy-related protein SQSTM1/p62 to activate the NF-kappaB pathway.

    circRNA_SLC8A1 promotes the survival of mycobacterium tuberculosis in macrophages by upregulating expression of autophagy-related protein SQSTM1/p62 to activate the NF-κB pathway.
    Li Z, Gao Y, Zhang B, Dong W, Xi Y, Li Y, Cui J., Free PMC Article

    03/5/2024
    Endothelium-specific deletion of p62 causes organ fibrosis and cardiac dysfunction.

    Endothelium-specific deletion of p62 causes organ fibrosis and cardiac dysfunction.
    Feng J, Li Y, Zhang Y, Sun S, Sun J, Xu Q, Ji X, Liu Y, Wan Q., Free PMC Article

    03/1/2024
    Nuclear-cytoplasmic translocation of SQSTM1/p62 protein enhances ESCC cell migration and invasion by stabilizing EPLIN expression.

    Nuclear-cytoplasmic translocation of SQSTM1/p62 protein enhances ESCC cell migration and invasion by stabilizing EPLIN expression.
    Liu Z, Yang LY, Hao JJ, Zhang N, Fan ZL, Cai HQ, Cai Y, Wei WQ, Zhang Y, Wang MR.

    02/4/2024
    SQSTM1/p62 inhibition impairs pro-survival signaling in hypoxic human dendritic cells.

    SQSTM1/p62 inhibition impairs pro-survival signaling in hypoxic human dendritic cells.
    Coppola F, Monaci S, Falsini A, Aldinucci C, Filippi I, Rossi D, Carraro F, Naldini A.

    01/17/2024
    Distal myopathy due to digenic inheritance of TIA1 and SQSTM1 variants in two unrelated Spanish patients.

    Distal myopathy due to digenic inheritance of TIA1 and SQSTM1 variants in two unrelated Spanish patients.
    Bermejo-Guerrero L, de Fuenmayor Fernández-de la Hoz CP, González-Quereda L, Segarra-Casas A, Nedkova V, Gallano P, Martín-Jiménez P, Hernández-Laín A, Olivé M, Arteche-López A, Domínguez-González C.

    12/21/2023
    TRIM11 attenuates Treg cell differentiation by p62-selective autophagic degradation of AIM2.

    TRIM11 attenuates Treg cell differentiation by p62-selective autophagic degradation of AIM2.
    Yu T, Yang X, Fu Q, Liang J, Wu X, Sheng J, Chen Y, Xiao L, Wu Y, Nie D, You X, Mai H, Chen K, Hu S.

    12/5/2023
    Cancer-associated fibroblasts-derived CXCL12 enhances immune escape of bladder cancer through inhibiting P62-mediated autophagic degradation of PDL1.

    Cancer-associated fibroblasts-derived CXCL12 enhances immune escape of bladder cancer through inhibiting P62-mediated autophagic degradation of PDL1.
    Zhang Z, Yu Y, Zhang Z, Li D, Liang Z, Wang L, Chen Y, Liang Y, Niu H., Free PMC Article

    12/1/2023
    The role of p62 in cell death and survival of 5-fluorouracil and oxaliplatin-resistant colorectal cancer cells.

    The role of p62 in cell death and survival of 5-fluorouracil and oxaliplatin-resistant colorectal cancer cells.
    Zitkute V, Jasinevicius A, Vaitiekaite G, Kukcinaviciute E, Aleksandraviciute B, Eidenaite E, Sudeikis L, Jonusiene V, Sasnauskiene A.

    11/25/2023
    USP13 deubiquitinates p62/SQSTM1 to induce autophagy and Nrf2 release for activating antioxidant response genes.

    USP13 deubiquitinates p62/SQSTM1 to induce autophagy and Nrf2 release for activating antioxidant response genes.
    Lee B, Kim YH, Lee W, Choi HY, Lee J, Kim J, Mai DN, Jung SF, Kwak MS, Shin JS.

    11/6/2023
    The selective autophagy adaptor p62/SQSTM1 forms phase condensates regulated by HSP27 that facilitate the clearance of damaged lysosomes via lysophagy.

    The selective autophagy adaptor p62/SQSTM1 forms phase condensates regulated by HSP27 that facilitate the clearance of damaged lysosomes via lysophagy.
    Gallagher ER, Holzbaur ELF., Free PMC Article

    10/4/2023
    SQSTM1/p62 and Hepatic Mallory-Denk Body Formation in Alcohol-Associated Liver Disease.

    SQSTM1/p62 and Hepatic Mallory-Denk Body Formation in Alcohol-Associated Liver Disease.
    Qian H, Ding WX., Free PMC Article

    09/20/2023
    The transcription factor NRF1 (NFE2L1) activates aggrephagy by inducing p62 and GABARAPL1 after proteasome inhibition to maintain proteostasis.

    The transcription factor NRF1 (NFE2L1) activates aggrephagy by inducing p62 and GABARAPL1 after proteasome inhibition to maintain proteostasis.
    Hatanaka A, Nakada S, Matsumoto G, Satoh K, Aketa I, Watanabe A, Hirakawa T, Tsujita T, Waku T, Kobayashi A., Free PMC Article

    09/7/2023
    The sequestosome 1 protein: therapeutic vulnerabilities in ovarian cancer.

    The sequestosome 1 protein: therapeutic vulnerabilities in ovarian cancer.
    Nurzadeh M, Ghalandarpoor-Attar SM, Ghalandarpoor-Attar SN, Rabiei M.

    08/30/2023
    SQSTM1 is a therapeutic target for infection and sterile inflammation.

    SQSTM1 is a therapeutic target for infection and sterile inflammation.
    Tang D, Kang R.

    08/11/2023
    TFAM knockdown undermines SQSTM1 mRNA stability but retards autophagy flux and inhibits tumor cells proliferation under starvation conditions.

    TFAM knockdown undermines SQSTM1 mRNA stability but retards autophagy flux and inhibits tumor cells proliferation under starvation conditions.
    Jiang X, Xu Y, Yang J, Wang J, Gao L, Yu L.

    07/17/2023
    Impairment of autophagy promotes human conjunctival fibrosis and pterygium occurrence via enhancing the SQSTM1-NF-kappaB signaling pathway.

    Impairment of autophagy promotes human conjunctival fibrosis and pterygium occurrence via enhancing the SQSTM1-NF-κB signaling pathway.
    He Q, Cai Y, Huang J, He X, Han W, Chen W., Free PMC Article

    07/7/2023
    The versatile defender: exploring the multifaceted role of p62 in intracellular bacterial infection.

    The versatile defender: exploring the multifaceted role of p62 in intracellular bacterial infection.
    Zhou Y, Hua S, Song L., Free PMC Article

    05/30/2023
    SQSTM1/p62 Knockout by Using the CRISPR/Cas9 System Inhibits Migration and Invasion of Hepatocellular Carcinoma.

    SQSTM1/p62 Knockout by Using the CRISPR/Cas9 System Inhibits Migration and Invasion of Hepatocellular Carcinoma.
    Lu J, Ding Y, Zhang W, Qi Y, Zhou J, Xu N, Zhang Y, Xie W., Free PMC Article

    05/24/2023
    Spitz Tumor With SQSTM1::NTRK2 Fusion: A Clinicopathological Study of 5 Cases.

    Spitz Tumor With SQSTM1::NTRK2 Fusion: A Clinicopathological Study of 5 Cases.
    Mansour B, Vanecek T, Kastnerova L, Nosek D, Kazakov DV, Donati M.

    04/20/2023
    MicroRNA-183-5p regulates TAR DNA-binding protein 43 neurotoxicity via SQSTM1/p62 in amyotrophic lateral sclerosis.

    MicroRNA-183-5p regulates TAR DNA-binding protein 43 neurotoxicity via SQSTM1/p62 in amyotrophic lateral sclerosis.
    Kim HC, Zhang Y, King PH, Lu L.

    03/20/2023
    p62/SQSTM1 in liver diseases: the usual suspect with multifarious identities.

    p62/SQSTM1 in liver diseases: the usual suspect with multifarious identities.
    Tan CT, Soh NJH, Chang HC, Yu VC.

    02/17/2023
    Analysis of microRNA expression profiles in exosomes derived from acute myeloid leukemia by p62 knockdown and effect on angiogenesis.

    Analysis of microRNA expression profiles in exosomes derived from acute myeloid leukemia by p62 knockdown and effect on angiogenesis.
    Li C, Long X, Liang P, Liu Z, Wang C, Hu R., Free PMC Article

    01/28/2023
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