1. Signaling Pathways
  2. Cell Cycle/DNA Damage
    Stem Cell/Wnt
  3. Casein Kinase
  4. CK1 Isoform
  5. CK1 Inhibitor

CK1 Inhibitor

CK1 Inhibitors (56):

Cat. No. Product Name Effect Purity
  • HY-13912
    IWP-2
    Inhibitor 99.93%
    IWP-2 is an inhibitor of Wnt processing and secretion with an IC50 of 27 nM. IWP-2 targets the membrane-bound O-acyltransferase porcupine (Porcn) and thus preventing a crucial Wnt ligand palmitoylation. IWP-2 is also an ATP-competitive CK1δ inhibitor with an IC50 of 40 nM for the gatekeeper mutant M82FCK1δ.
  • HY-10324
    D4476
    Inhibitor 99.94%
    D4476 is a potent, selective and cell-permeable inhibitor of casein kinase 1(CK1) with an IC50 value of 0.3 μM in vitro.
  • HY-15490
    PF-670462 dihydrochloride
    Inhibitor 99.96%
    PF-670462 dihydrochloride is a potent and selective inhibitor of casein kinase (CK1ε and CK1δ), with IC50s of 7.7 nM and 14 nM, respectively.
  • HY-123954
    BTX-A51
    Inhibitor 98.58%
    BTX-A51 (Casein Kinase inhibitor A51) is a potent and orally active casein kinase 1α (CK1α) inhibitor. BTX-A51 induces leukemia cell apoptosis, and has potent anti-leukemic activities.
  • HY-145319
    FPFT-2216
    Inhibitor 99.75%
    FPFT-2216, a “molecular glue” compound, degrades phosphodiesterase 6D (PDE6D), zinc finger transcription factors Ikaros (IKZF1), Aiolos (IKZF3), and casein kinase 1α (CK1α). FPFT-2216 can be used for the research of cancer and inflammatory disease.
  • HY-173494
    GSK-3β/CK-1δ-IN-1
    Inhibitor
    GSK-3β/CK-1δ-IN-1 (8d) is a dual and blood-brain barrier penetrated GSK-3β / CK-1δ inhibitor, with IC50 values of 0.77 μM for GSK-3β and 0.57 μM for CK-1δ, respectively. GSK-3β/CK-1δ-IN-1 (8d) can be used in the research for neuroblastoma.
  • HY-170859A
    AH081
    Inhibitor
    AH081 (Compound 38) is a CK1δ/ε PROTAC degrader. AH081 is the negative control compound of AH078 (HY-170859). AH081 has inhibitory but no degradation activity for CK1δ/ε by using an inactive stereoisomer of the VHL ligand. Pink: CK1δ/ε ligand (HY-148251); Blue: VHL ligase ligand (HY-125845B); Black: linker
  • HY-145322
    TMX-4116
    Inhibitor 99.76%
    TMX-4116 is a casein kinase 1α (CK1α) degrader. TMX-4116 shows the degradation preference for CK1α with DC50s less than 200 nM in MOLT4, Jurkat, and MM.1S cells. TMX-4116 can be used for the research of multiple myeloma.
  • HY-100011
    SR-3029
    Inhibitor 99.73%
    SR-3029 is a potent and ATP competitive CK1δ and CK1ε inhibitor, with IC50s of 44 nM and 260 nM, respectively, and Kis of 97 nM for both kinases.
  • HY-12470
    PF-4800567
    Inhibitor 99.69%
    PF-4800567 is a potent and selective inhibitor of casein kinase 1? (CK1?), with an IC50 of 32 nM, which is greater than 20-fold selectivity over CK1δ (IC50, 711 nM).
  • HY-12774
    IC261
    Inhibitor 99.63%
    IC261 is a selective, ATP-competitive CK1 inhibitor, with IC50s of 1 μM, 1 μM, 16 μM for Ckiδ, Ckiε and Ckiα1, respectively.
  • HY-12443
    PF-5006739
    Inhibitor 99.56%
    PF-5006739 is a potent and selective inhibitor of CK1δ/ε with IC50s of 3.9 nM and 17.0 nM, respectively. PF-5006739 is a potential therapeutic agent for a range of psychiatric disorders with low nanomolar in vitro potency for CK1δ/ε and high kinome selectivity. PF-5006739 attenuats opioid agent-seeking behavior in a rodent operant reinstatement model in animals in a dose-dependent manner. PF-5006739 improves glucose tolerance in both diet-induced obesity (DIO) and genetic (ob/ob) mice models of obesity.
  • HY-108642B
    AMG-548 dihydrochloride
    Inhibitor 99.86%
    AMG-548 dihydrochloride, an orally active and selective p38α inhibitor (Ki=0.5 nM), shows slightly selective over p38β (Ki=36 nM) and >1000 fold selective against p38γ and p38δ. AMG-548 dihydrochloride is also extremely potent in the inhibition of whole blood LPS stimulated TNFα (IC50=3 nM). AMG-548 dihydrochloride inhibits Wnt signaling by directly inhibiting Casein kinase 1 isoforms δ and ε.
  • HY-10456
    TAK-715
    Inhibitor 99.76%
    TAK-715 is an orally active and potent p38 MAPK inhibitor with IC50s of 7.1 nM, 200 nM for p38α and p38β, respectively. TAK-715 inhibits casein kinase I (CK1δ/ε) to regulate activation of Wnt/β-catenin signaling. TAK-715 shows good significant efficacy in a rat arthritis model.
  • HY-133028
    CKI-7 free base
    Inhibitor
    CKI-7 free base is a potent and ATP-competitive casein kinase 1 (CK1) inhibitor with an IC50 of 6 μM and a Ki of 8.5 μM. CKI-7 free base is a selective Cdc7 kinase inhibitor. CKI-7 free base also inhibits SGK, ribosomal S6 kinase-1 (S6K1) and mitogen- and stress-activated protein kinase-1 (MSK1). CKI-7 free base has a much weaker effect on casein kinase II and other protein kinases.
  • HY-145940
    BAY-204
    Inhibitor 99.94%
    BAY-204 (BRD3727) is a potent, ATP-competitive, and selective CSNK1α inhibitor (IC50 = 2 nM at 10 μM ATP; 12 nM at 1 mM ATP). BAY-204 can be used for the study of acute myeloid leukemia (AML).
  • HY-153866
    CK1-IN-2
    Inhibitor 99.54%
    CK1-IN-2 (compound Nr.4) is a potent CK1 inhibitor with an IC50 values of 123, 19.8, 26.8, 74.3 nM for CK1a, CK1d, CK1e, p38a, respectively.
  • HY-108642
    AMG-548
    Inhibitor ≥99.0%
    AMG-548, an orally active and selective p38α inhibitor (Ki=0.5 nM), shows slightly selective over p38β (Ki=36 nM) and >1000 fold selective against p38γ and p38δ. AMG 548 is also extremely potent in the inhibition of whole blood LPS stimulated TNFα (IC50=3 nM). AMG-548 inhibits Wnt signaling by directly inhibiting Casein kinase 1 isoforms δ and ε.
  • HY-18285
    Longdaysin
    Inhibitor 99.83%
    Longdaysin is a inhibitor of the Wnt/β-catenin signaling pathway, which exerts antitumor effect through blocking CK1δ/ε-dependent Wnt signaling. Longdaysin inhibits CK1α, CK1δ, CDK7, and ERK2 with IC50s of  5.6 µM, 8.8 µM, 29 µM, and 52 µM, respectively.
  • HY-111820
    CK1-IN-1
    Inhibitor 99.19%
    CK1-IN-1 (Compound 1c) is a casein kinase 1 (CK1) inhibitor with IC50 values of 15 nM and 16 nM for CK1δ and CK1ε, respectively. CK1-IN-1 inhibits p38α MAPK with an IC50 of 73 nM. CK1-IN-1 can be used to study cardiomyogenesis.