686772-17-8
Chemical Structure
IWP-4
- CAS No.: 686772-17-8
- Formula:C23H20N4O3S3
- Molecular Weight:496.62
IUPAC Name: 2-((3-(2-methoxyphenyl)-4-oxo-3,4,6,7-tetrahydrothieno[3,2-d]pyrimidin-2-yl)thio)-N-(6-methylbenzo[d]thiazol-2-yl)acetamide
InChIKey: RHUJMHOIQBDFQR-UHFFFAOYSA-N
SMILES: O=C(NC1=NC2=CC=C(C)C=C2S1)CSC3=NC(CCS4)=C4C(N3C5=CC=CC=C5OC)=O
Biological Activity: IWP-4 is a Wnt inhibitor with an IC50 of 25 nM. IWP-4 specifically inhibits casein kinase 1δ/ε (CK1δ/ε), with an IC50 of 1.06 μM against wild-type CK1δ, 1.02 μM against the CK1δ kinase domain, and 7.07 μM against CK1ε; it shows enhanced inhibitory activity against the M82F CK1δ mutant (IC50 = 0.14 μM). IWP-4 is applicable to research related to cancer, Alzheimer's disease (AD), and heart failure[1][2][3].
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IWP-4 | 99.81% | IWP-4 is a Wnt inhibitor with an IC50 of 25 nM. IWP-4 specifically inhibits casein kinase 1δ/ε (CK1δ/ε), with an IC50 of 1.06 μM against wild-type CK1δ, 1.02 μM against the CK1δ kinase domain, and 7.07 μM against CK1ε; it shows enhanced inhibitory activity against the M82F CK1δ mutant (IC50 = 0.14 μM). IWP-4 is applicable to research related to cancer, Alzheimer's disease (AD), and heart failure. | ||||||||||||||||||||
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IWP-4 (GMP) | IWP-4 (GMP) is the GMP-grade form of IWP-4 (HY-12879). IWP-4 is a Wnt inhibitor with an IC50 of 25 nM. IWP-4 specifically inhibits casein kinase 1δ/ε (CK1δ/ε), with an IC50 of 1.06 μM against wild-type CK1δ, 1.02 μM against the CK1δ kinase domain, and 7.07 μM against CK1ε; it shows enhanced inhibitory activity against the M82F CK1δ mutant (IC50 = 0.14 μM). IWP-4 is applicable to research related to cancer, Alzheimer's disease (AD), and heart failure. | |||||||||||||||||||||
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- [1]. García-Reyes B, et al. Discovery of Inhibitor of Wnt Production 2 (IWP-2) and Related Compounds As Selective ATP-Competitive Inhibitors of Casein Kinase 1 (CK1) δ/ε. J Med Chem. 2018;61(9):4087-4102. [Content Brief]
- [2]. Wang J, et al. A RNA-seq approach for exploring the protective effect of ginkgolide B on glutamate-induced astrocytes injury. J Ethnopharmacol. 2021;270:113807. [Content Brief]
- [3]. Hudson J, et al. Primitive cardiac cells from human embryonic stem cells. Stem Cells Dev. 2012 Jun 10;21(9):1513-23. [Content Brief]
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