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    BAG6 BAG cochaperone 6 [ Homo sapiens (human) ]

    Gene ID: 7917, updated on 17-Jun-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    DERL2 (derlin 2) stabilizes BAG6 (BAG cochaperone 6) in chemotherapy resistance of cholangiocarcinoma.

    DERL2 (derlin 2) stabilizes BAG6 (BAG cochaperone 6) in chemotherapy resistance of cholangiocarcinoma.
    Liu L, Wu J, Yan Y, Cheng S, Yu S, Wang Y., Free PMC Article

    02/13/2024
    Mitochondrial antiviral-signalling protein is a client of the BAG6 protein quality control complex.

    Mitochondrial antiviral-signalling protein is a client of the BAG6 protein quality control complex.
    Roboti P, Lawless C, High S., Free PMC Article

    05/14/2022
    GET4 is a novel driver gene in colorectal cancer that regulates the localization of BAG6, a nucleocytoplasmic shuttling protein.

    GET4 is a novel driver gene in colorectal cancer that regulates the localization of BAG6, a nucleocytoplasmic shuttling protein.
    Koike K, Masuda T, Sato K, Fujii A, Wakiyama H, Tobo T, Takahashi J, Motomura Y, Nakano T, Saito H, Matsumoto Y, Otsu H, Takeishi K, Yonemura Y, Mimori K, Nakagawa T., Free PMC Article

    01/15/2022
    BAG3 and BAG6 differentially affect the dynamics of stress granules by targeting distinct subsets of defective polypeptides released from ribosomes.

    BAG3 and BAG6 differentially affect the dynamics of stress granules by targeting distinct subsets of defective polypeptides released from ribosomes.
    Mediani L, Galli V, Carrà AD, Bigi I, Vinet J, Ganassi M, Antoniani F, Tiago T, Cimino M, Mateju D, Cereda C, Pansarasa O, Alberti S, Mandrioli J, Carra S., Free PMC Article

    09/25/2021
    BAG6 promotes PINK1 signaling pathway and is essential for mitophagy.

    BAG6 promotes PINK1 signaling pathway and is essential for mitophagy.
    Ragimbeau R, El Kebriti L, Sebti S, Fourgous E, Boulahtouf A, Arena G, Espert L, Turtoi A, Gongora C, Houédé N, Pattingre S.

    06/26/2021
    Expression Analysis of Fyn and Bat3 Signal Transduction Molecules in Patients with Chronic Lymphocytic Leukemia.

    Expression Analysis of Fyn and Bat3 Signal Transduction Molecules in Patients with Chronic Lymphocytic Leukemia.
    Hosseini-Valiki F, Taghiloo S, Tavakolian G, Amjadi O, Tehrani M, Hedayatizadeh-Omran A, Alizadeh-Navaei R, Zaboli E, Shekarriz R, Asgarian-Omran H., Free PMC Article

    06/12/2021
    Secreted Ligands of the NK Cell Receptor NKp30: B7-H6 Is in Contrast to BAG6 Only Marginally Released via Extracellular Vesicles.

    Secreted Ligands of the NK Cell Receptor NKp30: B7-H6 Is in Contrast to BAG6 Only Marginally Released via Extracellular Vesicles.
    Ponath V, Hoffmann N, Bergmann L, Mäder C, Alashkar Alhamwe B, Preußer C, Pogge von Strandmann E., Free PMC Article

    05/29/2021
    The cleft palate candidate gene BAG6 supports FoxO1 acetylation topromote FasL-mediated apoptosis during palate fusion.

    The cleft palate candidate gene BAG6 supports FoxO1 acetylation to promote FasL-mediated apoptosis during palate fusion.
    Xu J, Liu F, Xiong Z, Huo J, Li W, Jiang B, Mao W, He B, Wang X, Li G.

    03/13/2021
    Association Between eNOS, MMP-9, BAG-6 Gene Polymorphisms and Risk of Hypertensive Disorders of Pregnancy in the Northern Chinese Population.

    Association Between eNOS, MMP-9, BAG-6 Gene Polymorphisms and Risk of Hypertensive Disorders of Pregnancy in the Northern Chinese Population.
    Yuan X, Guo M, Li Y, Han Y, Li P.

    02/27/2021
    HLA-B-associated transcript 3 (Bat3) stabilizes and activates p53 in a HAUSP-dependent manner.

    HLA-B-associated transcript 3 (Bat3) stabilizes and activates p53 in a HAUSP-dependent manner.
    Zhang R, Cui D, Xue T, Lang Y, Zhang Y, Li L, Sun H, Kuang Y, Li G, Tang J., Free PMC Article

    02/13/2021
    BAG6 is a novel microtubule-binding protein that regulates ciliogenesis by modulating the cell cycle and interacting with gamma-tubulin.

    BAG6 is a novel microtubule-binding protein that regulates ciliogenesis by modulating the cell cycle and interacting with γ-tubulin.
    He X, Zhang Y, Yang L, Feng J, Yang S, Li T, Zhong T, Li Q, Xie W, Liu M, Zhou J, Li D, Xie S.

    10/31/2020
    Exosome-dependent immune surveillance at the metastatic niche requires BAG6 and CBP/p300-dependent acetylation of p53.

    Exosome-dependent immune surveillance at the metastatic niche requires BAG6 and CBP/p300-dependent acetylation of p53.
    Schuldner M, Dörsam B, Shatnyeva O, Reiners KS, Kubarenko A, Hansen HP, Finkernagel F, Roth K, Theurich S, Nist A, Stiewe T, Paschen A, Knittel G, Reinhardt HC, Müller R, Hallek M, von Strandmann EP., Free PMC Article

    10/3/2020
    PAQR9 binds to the DUF3538 domain within the proline-rich stretch of BAG6. PAQR9 reduces the binding of MLPs to BAG6 in a DUF3538 domain-dependent manner. Taken together, our results indicate that PAQR9 plays a role in the regulation of protein quality control of MLPs via affecting the interaction of BAG6 with membrane proteins.

    PAQR9 Modulates BAG6-mediated protein quality control of mislocalized membrane proteins.
    You X, Lin Y, Hou Y, Xu L, Cao Q, Chen Y.

    07/4/2020
    We conclude that the RNF126/BAG6 complex contributes to G0S2 degradation and that interventions to prevent G0S2 degradation may offer a therapeutic strategy for managing ischemic diseases.

    A molecular triage process mediated by RING finger protein 126 and BCL2-associated athanogene 6 regulates degradation of G(0)/G(1) switch gene 2.
    Kamikubo K, Kato H, Kioka H, Yamazaki S, Tsukamoto O, Nishida Y, Asano Y, Imamura H, Kawahara H, Shintani Y, Takashima S., Free PMC Article

    05/9/2020
    we suggest that Rab proteins represent a novel set of substrates for BAG6, and the BAG6-mediated pathway is associated with the regulation of membrane vesicle trafficking events in mammalian cells.

    Cytoplasmic control of Rab family small GTPases through BAG6.
    Takahashi T, Minami S, Tsuchiya Y, Tajima K, Sakai N, Suga K, Hisanaga SI, Ohbayashi N, Fukuda M, Kawahara H., Free PMC Article

    05/2/2020
    The SGTA is a co-chaperone that, in collaboration with the complex of BAG6, facilitates the biogenesis and quality control of hydrophobic proteins, protecting them from the aqueous cytosolic environment.

    The roles of cytosolic quality control proteins, SGTA and the BAG6 complex, in disease.
    Benarroch R, Austin JM, Ahmed F, Isaacson RL., Free PMC Article

    11/23/2019
    Mechanistically, Lnc-Tim3 specifically binds to Tim-3 and blocks its interaction with Bat3, thus suppressing downstream Lck/ NFAT1/AP-1 signaling, leading to nuclear localization of Bat3, and enhancing p300-dependent p53 and RelA transcriptional activation of anti-apoptosis genes including MDM2 and Bcl-2.

    Long non-coding RNA Lnc-Tim3 exacerbates CD8 T cell exhaustion via binding to Tim-3 and inducing nuclear translocation of Bat3 in HCC.
    Ji J, Yin Y, Ju H, Xu X, Liu W, Fu Q, Hu J, Zhang X, Sun B., Free PMC Article

    11/9/2019
    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 observations suggest a mechanism whereby the BAG6 ubiquitin-linked domain provides a platform for discriminating substrates with shorter hydrophobicity stretches as a signal for defective proteins.

    A conserved island of BAG6/Scythe is related to ubiquitin domains and participates in short hydrophobicity recognition.
    Tanaka H, Takahashi T, Xie Y, Minami R, Yanagi Y, Hayashishita M, Suzuki R, Yokota N, Shimada M, Mizushima T, Kuwabara N, Kato R, Kawahara H.

    08/13/2016
    BAG6 co-localizes with HSPA2 in huinan testicular germ cells and epididymal spermatozoa, moving from the equator to the anterior head during capacitation and stably interacting with HSPA2. In zona pellucida binding defect infertility, BAG6 is lacking.

    Novel characterization of the HSPA2-stabilizing protein BAG6 in human spermatozoa.
    Bromfield E, Aitken RJ, Nixon B.

    07/30/2016
    we found BAG6 to be dispensable in antigen processing

    Chaperone BAG6 is dispensable for MHC class I antigen processing and presentation.
    Bitzer A, Basler M, Groettrup M.

    05/14/2016
    VNTR in the coding region of the FAM46A gene, FAM46A rs11040 SNP and BAG6 rs3117582 SNP are associated with susceptibility to tuberculosis

    Association of variable number of tandem repeats in the coding region of the FAM46A gene, FAM46A rs11040 SNP and BAG6 rs3117582 SNP with susceptibility to tuberculosis.
    Etokebe GE, Bulat-Kardum L, Munthe LA, Balen S, Dembic Z., Free PMC Article

    01/30/2016
    BAG6 rs3117582 SNP was associated with non small cell lung cancer in the Norwegian subjects and the combined Croatian-Norwegian subjects corroborating the earlier finding that BAG6 rs3117582 SNP was associated with lung cancer in Europeans.

    Association of the FAM46A gene VNTRs and BAG6 rs3117582 SNP with non small cell lung cancer (NSCLC) in Croatian and Norwegian populations.
    Etokebe GE, Zienolddiny S, Kupanovac Z, Enersen M, Balen S, Flego V, Bulat-Kardum L, Radojčić-Badovinac A, Skaug V, Bakke P, Haugen A, Dembic Z., Free PMC Article

    01/16/2016
    The BAT2/BAT3 polymorphisms and specifically the A/C haplotype may represent a novel immunogenetic factor associated with graft rejection in patients undergoing allo-HSCT.

    BAT2 and BAT3 polymorphisms as novel genetic risk factors for rejection after HLA-related SCT.
    Piras IS, Angius A, Andreani M, Testi M, Lucarelli G, Floris M, Marktel S, Ciceri F, La Nasa G, Fleischhauer K, Roncarolo MG, Bulfone A, Gregori S, Bacchetta R., Free PMC Article

    07/25/2015
    Data show that molecular chaperone BAG6_ubiquitin-like domain (UBL) and ubiquitin-like 4A UBL4A_UBL compete for the same binding site on N-terminal dimerisation domain of SGTA protein (SGTA_NT).

    Solution structure of the SGTA dimerisation domain and investigation of its interactions with the ubiquitin-like domains of BAG6 and UBL4A.
    Darby JF, Krysztofinska EM, Simpson PJ, Simon AC, Leznicki P, Sriskandarajah N, Bishop DS, Hale LR, Alfano C, Conte MR, Martínez-Lumbreras S, Thapaliya A, High S, Isaacson RL., Free PMC Article

    07/25/2015
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