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    CSNK1D casein kinase 1 delta [ Homo sapiens (human) ]

    Gene ID: 1453, updated on 17-Jun-2024

    GeneRIFs: Gene References Into Functions

    GeneRIFPubMed TitleDate
    Prognostic value and immunological role of CSNK1D in human cancers.

    Prognostic value and immunological role of CSNK1D in human cancers.
    Wang J, Hu B, Wang W., Free PMC Article

    09/25/2023
    CSNK1D-mediated phosphorylation of HNRNPA2B1 induces miR-25-3p/miR-93-5p maturation to promote prostate cancer cell proliferation and migration through m[6]A-dependent manner.

    CSNK1D-mediated phosphorylation of HNRNPA2B1 induces miR-25-3p/miR-93-5p maturation to promote prostate cancer cell proliferation and migration through m(6)A-dependent manner.
    Qi F, Shen W, Wei X, Cheng Y, Xu F, Zheng Y, Li L, Qin C, Li X., Free PMC Article

    05/30/2023
    Casein Kinase 1delta Phosphorylates TDP-43 and Suppresses Its Function in Tau mRNA Processing.

    Casein Kinase 1δ Phosphorylates TDP-43 and Suppresses Its Function in Tau mRNA Processing.
    Yang M, Qi R, Liu Y, Shen X, Zhao Y, Jin N, Wu R, Liu F, Gu J.

    03/16/2023
    Upregulation of Stress-Induced Protein Kinase CK1 Delta is associated with a Poor Prognosis for patients with Hepatocellular Carcinoma.

    Upregulation of Stress-Induced Protein Kinase CK1 Delta is associated with a Poor Prognosis for patients with Hepatocellular Carcinoma.
    Zhang H, Qiu C, Zeng H, Zhu W, Lyu W, Lao X.

    10/9/2021
    beta-Trcp and CK1delta-mediated degradation of LZTS2 activates PI3K/AKT signaling to drive tumorigenesis and metastasis in hepatocellular carcinoma.

    β-Trcp and CK1δ-mediated degradation of LZTS2 activates PI3K/AKT signaling to drive tumorigenesis and metastasis in hepatocellular carcinoma.
    Lu Y, Li X, Liu H, Xue J, Zeng Z, Dong X, Zhang T, Wu G, Yang K, Xu S., Free PMC Article

    07/31/2021
    CK1delta-Derived Peptides as Novel Tools Inhibiting the Interactions between CK1delta and APP695 to Modulate the Pathogenic Metabolism of APP.

    CK1δ-Derived Peptides as Novel Tools Inhibiting the Interactions between CK1δ and APP695 to Modulate the Pathogenic Metabolism of APP.
    Roth A, Gärtner F, Mayer K, Beyrle J, König I, Knippschild U, Bischof J., Free PMC Article

    07/17/2021
    Targeting Casein Kinase 1 Delta Sensitizes Pancreatic and Bladder Cancer Cells to Gemcitabine Treatment by Upregulating Deoxycytidine Kinase.

    Targeting Casein Kinase 1 Delta Sensitizes Pancreatic and Bladder Cancer Cells to Gemcitabine Treatment by Upregulating Deoxycytidine Kinase.
    Vena F, Bayle S, Nieto A, Quereda V, Aceti M, Frydman SM, Sansil SS, Grant W, Monastyrskyi A, McDonald P, Roush WR, Teng M, Duckett D., Free PMC Article

    06/5/2021
    CRISPR-mediated gene targeting of CK1delta/epsilon leads to enhanced understanding of their role in endocytosis via phosphoregulation of GAPVD1.

    CRISPR-mediated gene targeting of CK1δ/ε leads to enhanced understanding of their role in endocytosis via phosphoregulation of GAPVD1.
    Guillen RX, Beckley JR, Chen JS, Gould KL., Free PMC Article

    12/5/2020
    Human Rad17 is constitutively phosphorylated in vivo on a C-terminal threonine, T670. Rad17-T670 is phosphorylated by casein kinase 1delta/epsilon.

    Human Rad17 C-terminal tail is phosphorylated by concerted action of CK1δ/ε and CK2 to promote interaction with the 9-1-1 complex.
    Fukumoto Y, Nakayama Y, Yamaguchi N.

    06/13/2020
    The effect of CK1delta/epsilon inhibition strongly depends on endogenous PER2 protein levels, which differs depending on both the molecular cause of the circadian disruption and the patient's lighting environment.

    Systems approach reveals photosensitivity and PER2 level as determinants of clock-modulator efficacy.
    Kim DW, Chang C, Chen X, Doran AC, Gaudreault F, Wager T, DeMarco GJ, Kim JK., Free PMC Article

    05/9/2020
    Structure, regulation, and (patho-)physiological functions of the stress-induced protein kinase CK1 delta (CSNK1D).

    Structure, regulation, and (patho-)physiological functions of the stress-induced protein kinase CK1 delta (CSNK1D).
    Xu P, Ianes C, Gärtner F, Liu C, Burster T, Bakulev V, Rachidi N, Knippschild U, Bischof J., Free PMC Article

    08/31/2019
    X-ray crystallographic analysis of ligand-CK1delta complexes confirmed the expected binding mode of the 3,4-diaryl-isoxazole inhibitors. Surprisingly, the original compounds underwent spontaneous Pictet-Spengler cyclization with traces of formaldehyde during the co-crystallization process to form highly potent new ligands.

    Design, Synthesis and Biological Evaluation of Isoxazole-Based CK1 Inhibitors Modified with Chiral Pyrrolidine Scaffolds.
    Luxenburger A, Schmidt D, Ianes C, Pichlo C, Krüger M, von Drathen T, Brunstein E, Gainsford GJ, Baumann U, Knippschild U, Peifer C., Free PMC Article

    06/15/2019
    CK1delta phosphorylates Brg1 at Ser31/Ser35 residues to facilitate the binding of Brg1 to FBW7, leading to ubiquitination-mediated degradation.

    SCF(FBW7)-mediated degradation of Brg1 suppresses gastric cancer metastasis.
    Huang LY, Zhao J, Chen H, Wan L, Inuzuka H, Guo J, Fu X, Zhai Y, Lu Z, Wang X, Han ZG, Sun Y, Wei W., Free PMC Article

    01/26/2019
    Our results reveal a new mechanism of ZNF322A oncoprotein destruction regulated by the CK1delta/GSK3beta/FBXW7a axis. Deregulation of this signaling axis results in ZNF322A overexpression and promotes cancer progression

    CK1δ/GSK3β/FBXW7α axis promotes degradation of the ZNF322A oncoprotein to suppress lung cancer progression.
    Liao SY, Chiang CW, Hsu CH, Chen YT, Jen J, Juan HF, Lai WW, Wang YC.

    10/28/2017
    Report temperature-compensated CKIdelta-dependent multi-site phosphorylation in mammals underlies temperature compensated phosphorylation in circadian clocks.

    Temperature-Sensitive Substrate and Product Binding Underlie Temperature-Compensated Phosphorylation in the Clock.
    Shinohara Y, Koyama YM, Ukai-Tadenuma M, Hirokawa T, Kikuchi M, Yamada RG, Ukai H, Fujishima H, Umehara T, Tainaka K, Ueda HR.

    09/30/2017
    Study describes a specific mechanism for the regulation of CK1delta activity by proline-directed kinases, and demonstrate the relevance of this regulation in the control of a key CK1delta substrate, the PER2 protein.

    Site-specific phosphorylation of casein kinase 1 δ (CK1δ) regulates its activity towards the circadian regulator PER2.
    Eng GWL, Edison, Virshup DM., Free PMC Article

    09/23/2017
    Protein kinase C alpha (PKCalpha) is able to phosphorylate CK1delta at its C-terminally located residues S328, T329, and S370.

    CK1δ kinase activity is modulated by protein kinase C α (PKCα)-mediated site-specific phosphorylation.
    Meng Z, Bischof J, Ianes C, Henne-Bruns D, Xu P, Knippschild U.

    03/4/2017
    the results suggest that CK1delta activity can be modulated by the interplay between CK1delta and CDK2/E or CDK5/p35.

    CK1δ activity is modulated by CDK2/E- and CDK5/p35-mediated phosphorylation.
    Ianes C, Xu P, Werz N, Meng Z, Henne-Bruns D, Bischof J, Knippschild U.

    12/17/2016
    CK1delta inhibition represents a promising strategy for targeted treatment in human breast cancer with Wnt/beta-catenin involvement.

    Therapeutic targeting of casein kinase 1δ in breast cancer.
    Rosenberg LH, Lafitte M, Quereda V, Grant W, Chen W, Bibian M, Noguchi Y, Fallahi M, Yang C, Chang JC, Roush WR, Cleveland JL, Duckett DR., Free PMC Article

    09/24/2016
    Expression of truncated hyperactive form of CKIdelta causes mislocalization and aggregation of TDP-43 in cultured cells.

    Phosphorylation of TAR DNA-binding Protein of 43 kDa (TDP-43) by Truncated Casein Kinase 1δ Triggers Mislocalization and Accumulation of TDP-43.
    Nonaka T, Suzuki G, Tanaka Y, Kametani F, Hirai S, Okado H, Miyashita T, Saitoe M, Akiyama H, Masai H, Hasegawa M., Free PMC Article

    08/6/2016
    Inhibition of CK1delta increases lipid droplet formation and proliferation of both cancer and normal cells specifically under hypoxia and in an HIF-1alpha- and lipin-1-dependent manner.

    CK1δ restrains lipin-1 induction, lipid droplet formation and cell proliferation under hypoxia by reducing HIF-1α/ARNT complex formation.
    Kourti M, Ikonomou G, Giakoumakis NN, Rapsomaniki MA, Landegren U, Siniossoglou S, Lygerou Z, Simos G, Mylonis I., Free PMC Article

    12/26/2015
    site-specific phosphorylation of adiponectin, especially at sites targeted by CK1delta in vitro, provides an additional regulatory mechanism for modulating adiponectin complex formation and function.

    Gene expression levels of Casein kinase 1 (CK1) isoforms are correlated to adiponectin levels in adipose tissue of morbid obese patients and site-specific phosphorylation mediated by CK1 influences multimerization of adiponectin.
    Xu P, Fischer-Posovszky P, Bischof J, Radermacher P, Wabitsch M, Henne-Bruns D, Wolf AM, Hillenbrand A, Knippschild U.

    12/12/2015
    The dynamical and conformational properties for each of three isoforms of CK1 are explored through molecular dynamics (MD) simulations.

    A comparative study of structural and conformational properties of casein kinase-1 isoforms: insights from molecular dynamics and principal component analysis.
    Singh SP, Gupta DK.

    12/12/2015
    Results indicate that changes in the expression levels of casein kinase 1 isoforms CK1delta and DK1epsilon in colorectal tumors correlate with patients' survival.

    Effects of altered expression and activity levels of CK1δ and ɛ on tumor growth and survival of colorectal cancer patients.
    Richter J, Ullah K, Xu P, Alscher V, Blatz A, Peifer C, Halekotte J, Leban J, Vitt D, Holzmann K, Bakulev V, Pinna LA, Henne-Bruns D, Hillenbrand A, Kornmann M, Leithäuser F, Bischof J, Knippschild U.

    06/27/2015
    CK1delta and CK1epsilon play a decisive role in triggering late steps of pre-40S maturation that are required for acquisition of functionality of 40S ribosomal subunits in protein translation.

    CK1δ and CK1ε are components of human 40S subunit precursors required for cytoplasmic 40S maturation.
    Zemp I, Wandrey F, Rao S, Ashiono C, Wyler E, Montellese C, Kutay U.

    01/31/2015
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