CK2-TN03
Based on 1 Customer Validation
CK2-TN03 is an ATP-competitive casein kinase 2 (CK2) inhibitor, with an IC50 of 165 nM and a Ki of 20 nM. CK2-TN03 inhibits CK2-mediated survivin activation and reduces CK2-dependent phosphorylation levels of BRD4/MYCN and AKT1. CK2-TN03 exerts anti-neuroblastoma effects by inhibiting survivin, leading to mitotic catastrophe and apoptosis of cancer cells. CK2-TN03 can be used in studies related to neuroblastoma.
For research use only. We do not sell to patients.
- Purity : 98.02%
- CAS No.: 313226-24-3
- Formula: C17H14N2O3S
- Molecular Weight:326.37
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Storage:Powder -20°C, 3 years ; In solvent -80°C, 6 months , -20°C, 1 month
All Caspase Isoforms
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Biological Activity
Description
IC50 & Target
[1]|
CK2 165 nM (IC50) |
Caspase 3 |
Caspase-7 |
BRD4 |
Akt1 |
In Vitro
CK2-TN03 (0.2-25.0 μM; 48 h) induces dose-dependent cell death in the medulloblastoma DAOY cell line and multiple neuroblastoma cell lines, with EC50 values ranging from 0.31 to 1.95 μM; it shows no activity in glioblastoma U87 cells (EC50 >25 μM)[1].
CK2-TN03 (0.35-1.0 μM; 48 h) activates caspase 3/7 in CHP-212 neuroblastoma cells in a time-dependent manner, and primarily induces caspase-dependent apoptosis[1].
CK2-TN03 (0.5-1.0 μM; 24-48 h) induces G2/M cell cycle arrest and subsequent cell death in CHP-212 neuroblastoma cells[1].
CK2-TN03 (0.5 μM; 24 h) arrests CHP-212 neuroblastoma cells in mitosis, blocks successful cell division, and induces mitotic catastrophe and cell death[1].
CK2-TN03 (0.5 μM; 48 h) downregulates the activity and expression of survivin in CHP-212 neuroblastoma cells by directly inhibiting CK2-mediated phosphorylation of survivin and indirectly altering the AKT1/MDM2/p53 and BRD4/MYCN pathways, without changing the expression of CK2[1].
CK2-TN03 (0.5 μM; 48 h) does not affect the viability of differentiated quiescent SH-SY5Y neuroblastoma cells, which exhibit low survivin expression levels[1].
CK2-TN03 (1-10 μM; 72 h) induces cell death in a diverse panel of 160 cancer cell lines, with significant tumor entity selectivity, and exhibits the highest potency against melanoma, lymphoma, lung cancer, neuroblastoma, ovarian cancer, myeloma, soft tissue cancer and osteosarcoma cell lines[1].
CK2-TN03 (10 μM; 1 h) exhibits excellent permeability in MDCKII-MDR1 cells, with negligible efflux and no P-gp substrate activity[1].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only. Further protocols information, click here.
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Cell Line:Neuroblastoma CHP-212
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Concentration:0.35, 0.5 and 1.0 μM
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Incubation Time:48 h (monitored every 2 h)
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Result:Induced a time-dependent increase in caspase 3/7 activation, with significantly higher activation levels observed from 18 h onward compared to vehicle-treated controls.
Left a fraction of cell death unaffected by cotreatment with pan-caspase inhibitor Q-VD-OPh, while the inhibitor reduced most CK2-TN03-induced cell death.
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Cell Line:Neuroblastoma CHP-212
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Concentration:0.5 and 1.0 μM
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Incubation Time:24 h, 48 h
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Result:Increased the percentage of cells in the G2/M phase and the subG1 (dead cell) population after 24 and 48 h of treatment, with significant increases observed at both concentrations and time points compared to controls.
Increased G2/M phase cells after 24 h at 0.5 μM and 1.0 μM.
Further elevated G2/M and subG1 populations after 48 h at both concentrations.
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Cell Line:Differentiated neuroblastoma SH-SY5Y
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Concentration:0.5 μM
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Incubation Time:48 h
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Result:Did not reduce viability of differentiated SH-SY5Y cells, which had ~20% of the survivin protein levels present in undifferentiated cells.
In Vivo
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
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Animal Model:(Ncr)-Foxn1 nu nude mice (7-8 weeks old)[1]
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Dosage:40 mg/kg
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Administration:i.p.; once daily; 28 days
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Result:Reduced tumor growth rate, with tumor volume relative to baseline (VTx/VT0) reaching ~6 on day 28, compared to ~9 in vehicle controls.
Improved mouse survival: 5 treated mice survived to day 49, compared to 1 vehicle-treated mouse; 2 treated mice survived beyond day 85, with one showing complete tumor remission by day 14 and the other exhibiting a small, non-growing tumor mass post-treatment.
Increased p53 levels and decreased survivin levels and survivin phosphorylation in tumor tissue.
Chemical Information
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CAS No. 313226-24-3
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Appearance Solid
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Molecular Weight 326.37
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Formula C17H14N2O3S
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Color Light yellow to yellow
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SMILES
COC(C=C1)=C(O)C=C1/C=C(C(N/2)=O)/SC2=N\C3=CC=CC=C3
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Sequence
Asp-Lys-Phe-Val-Gly-{Leu-methyl}-{Nle}-NH2
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Sequence Shortening
DKFVG-{Leu-methyl}-{Nle}-NH2
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Shipping
Room temperature in continental US; may vary elsewhere.
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Storage
Powder -20°C 3 years In solvent -80°C 6 months -20°C 1 month
Solvent & Solubility
In Vitro:
DMSO : 83.33 mg/mL (255.32 mM; Need ultrasonic; Hygroscopic DMSO has a significant impact on the solubility of product, please use newly opened DMSO)
Please refer to the solubility information to select the appropriate solvent. Once prepared, please aliquot and store the solution to prevent product inactivation from repeated freeze-thaw cycles.
Storage method and period of stock solution: -80°C, 6 months; -20°C, 1 month. When stored at -80°C, please use it within 6 months. When stored at -20°C, please use it within 1 month.
Please refer to the solubility information to select the appropriate solvent. Once prepared, please aliquot and store the solution to prevent product inactivation from repeated freeze-thaw cycles.
Storage method and period of stock solution: -80°C, 6 months; -20°C, 1 month. When stored at -80°C, please use it within 6 months. When stored at -20°C, please use it within 1 month.
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
Protocols
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Kinase activity and phosphorylation assays
Kinase activity assays measure the ability of kinases to transfer phosphate groups from ATP to specific substrates, while phosphorylation assays detect the presence and levels of phosphorylated proteins. Common methods include radiolabeled ATP incorporation (e. g. ,), ADP release detection via bioluminescence (e. g. ,[3]), enzyme-linked immunosorbent assays (ELISA) for phospho-specific epitopes (e. g. ,[6]), and microtiter-based formats for high-throughput screening (e. g. ,[8]). The ADP-Glo assay quantifies kinase activity by measuring ADP produced during phosphorylation using a luciferase-based system. Radiometric assays involve autoradiography or scintillation counting after incorporation of 32P-labeled ATP into substrate proteins. ELISA-based approaches rely on phospho-specific antibodies to detect activated kinases in cell lysates or purified samples.
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Western Blot
Western blotting (WB) is a commonly used experimental method in molecular biology, biochemistry, and immunogenetics for identifying and quantifying target proteins. It combines gel electrophoresis with immunoassay, enabling researchers to analyze protein expression, post-translational modifications, and molecular weight.
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Apoptosis
Apoptosis, also called programmed cell death, is generally characterized by distinct morphological characteristics.
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TUNEL staining for apoptotic DNA fragmentation
TUNEL staining detects DNA strand breaks by using terminal deoxynucleotidyl transferase to add labeled nucleotides to exposed 3′-OH DNA termini, generating either microscopic staining in fixed cells or tissue sections, or fluorescence/cytometric signal in cell suspensions. TUNEL positivity reflects DNA fragmentation but should not be interpreted alone as definitive apoptosis, because TUNEL can also label necrotic, autolytic, mechanically damaged, or DNA-repair-associated DNA breaks.
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Cell Cytotoxicity Assay
Cytotoxicity assays are usually based on the assessment of cell membrane damage, which can also be indirectly detected by measuring cell viability. Detection methods include MTT assay, CKK-8 assay, LDH assay and ATP assay, etc.
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Annexin V plus membrane-impermeant dye apoptosis staining
Annexin V-based apoptosis assays rely on the detection of phosphatidylserine (PS) externalization from the inner leaflet of the plasma membrane to the outer leaflet, an early biochemical hallmark of apoptosis. Fluorescently labeled Annexin V binds PS in a calcium-dependent manner, enabling identification of early apoptotic cells by flow cytometry or fluorescence microscopy. When combined with a membrane-impermeant DNA-binding dye (e. g. , propidium iodide), this approach allows discrimination between viable (Annexin V−/dye−), early apoptotic (Annexin V+/dye−), and late apoptotic or necrotic (Annexin V+/dye+) cell populations by assessing membrane integrity and PS exposure.
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Apoptosis Solutions
Apoptosis is a regulated, generally non-lytic cell-death pathway that removes unwanted, damaged, infected, or abnormal cells through coordinated morphological changes, caspase activation, DNA fragmentation, and membrane remodeling. The intrinsic apoptosis pathway is controlled mainly by mitochondrial outer membrane permeabilization, BCL-2 family proteins, cytochrome c release, apoptosome formation, caspase-9 activation, and downstream executioner caspase-3/7 activation. The extrinsic apoptosis pathway is initiated by death receptors such as Fas, TNFR, and TRAIL receptors, which recruit adaptor proteins and activate caspase-8 before engaging executioner caspases or mitochondrial amplification through BID cleavage. Apoptosis is linked to many phenotypes, including cancer cell killing, tissue homeostasis, immune regulation, neurodegeneration, infection response, and treatment-induced cytotoxicity; unresolved questions include how apoptosis interacts with necroptosis, pyroptosis, ferroptos
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Protocol for Kinase activity and phosphorylation assays
Kinase activity assays measure transfer of phosphate from ATP to a protein or peptide substrate, generating phosphorylated substrate, ADP, or incorporated radiolabeled phosphate as the readout; phosphorylation assays measure site-specific phosphorylation in cells or tissues as a proxy for kinase-pathway activation, inhibition, or substrate regulation. Phosphorylation can be detected by phospho-specific Western blot, immunoprecipitation kinase assay, phospho-immunofluorescence, phospho-flow cytometry, luminescent ADP detection, radiolabeled ATP incorporation, or reporter-based pathway assays, and these readouts can be applied to cancer cells, primary neurons, mouse tumors, organoids, inflammatory macrophages, ferroptosis studies, and mitophagy studies when the kinase target is biologically relevant.
Purity & Documentation
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Data Sheet (280 KB)
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SDS (252 KB)
- English - EN (252 KB)
- Français - FR (252 KB)
- Deutsch - DE (252 KB)
- Norwegian - NO (252 KB)
- Español - ES (252 KB)
- Swedish - SV (252 KB)
- Italian - IT (252 KB)
- Korean - KR (252 KB)
- Portuguese - PT (252 KB)
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Handling Instructions (2659 KB)
References
Complete Stock Solution Preparation Table
Please refer to the solubility information to select the appropriate solvent. Once prepared, please aliquot and store the solution to prevent product inactivation from repeated freeze-thaw cycles.
Storage method and period of stock solution: -80°C, 6 months; -20°C, 1 month. When stored at -80°C, please use it within 6 months. When stored at -20°C, please use it within 1 month.
| Optional Solvent | Concentration Solvent Mass | 1 mg | 5 mg | 10 mg | 25 mg |
|---|---|---|---|---|---|
| DMSO | 1 mM | 3.0640 mL | 15.3200 mL | 30.6401 mL | 76.6002 mL |
| 5 mM | 0.6128 mL | 3.0640 mL | 6.1280 mL | 15.3200 mL | |
| 10 mM | 0.3064 mL | 1.5320 mL | 3.0640 mL | 7.6600 mL | |
| 15 mM | 0.2043 mL | 1.0213 mL | 2.0427 mL | 5.1067 mL | |
| 20 mM | 0.1532 mL | 0.7660 mL | 1.5320 mL | 3.8300 mL | |
| 25 mM | 0.1226 mL | 0.6128 mL | 1.2256 mL | 3.0640 mL | |
| 30 mM | 0.1021 mL | 0.5107 mL | 1.0213 mL | 2.5533 mL | |
| 40 mM | 0.0766 mL | 0.3830 mL | 0.7660 mL | 1.9150 mL | |
| 50 mM | 0.0613 mL | 0.3064 mL | 0.6128 mL | 1.5320 mL | |
| 60 mM | 0.0511 mL | 0.2553 mL | 0.5107 mL | 1.2767 mL | |
| 80 mM | 0.0383 mL | 0.1915 mL | 0.3830 mL | 0.9575 mL | |
| 100 mM | 0.0306 mL | 0.1532 mL | 0.3064 mL | 0.7660 mL |