» Articles » PMID: 19174555

Biological Characterization of AT7519, a Small-molecule Inhibitor of Cyclin-dependent Kinases, in Human Tumor Cell Lines

Overview
Journal Mol Cancer Ther
Date 2009 Jan 29
PMID 19174555
Citations 66
Authors
Affiliations
Soon will be listed here.
Abstract

Cyclin-dependent kinases (CDK), and their regulatory cyclin partners, play a central role in eukaryotic cell growth, division, and death. This key role in cell cycle progression, as well as their deregulation in several human cancers, makes them attractive therapeutic targets in oncology. A series of CDK inhibitors was developed using Astex's fragment-based medicinal chemistry approach, linked to high-throughput X-ray crystallography. A compound from this series, designated AT7519, is currently in early-phase clinical development. We describe here the biological characterization of AT7519, a potent inhibitor of several CDK family members. AT7519 showed potent antiproliferative activity (40-940 nmol/L) in a panel of human tumor cell lines, and the mechanism of action was shown here to be consistent with the inhibition of CDK1 and CDK2 in solid tumor cell lines. AT7519 caused cell cycle arrest followed by apoptosis in human tumor cells and inhibited tumor growth in human tumor xenograft models. Tumor regression was observed following twice daily dosing of AT7519 in the HCT116 and HT29 colon cancer xenograft models. We show that these biological effects are linked to inhibition of CDKs in vivo and that AT7519 induces tumor cell apoptosis in these xenograft models. AT7519 has an attractive biological profile for development as a clinical candidate, and the tolerability and efficacy in animal models compare favorably with other CDK inhibitors in clinical development. Studies described here formed the biological rationale for investigating the potential therapeutic benefit of AT7519 in cancer patients.

Citing Articles

Identification of C/EBPδ-Modifying Compounds as Potential Anticancer Agents Using a High-Throughput Drug Screen.

Hartl L, Duitman J, Aberson H, Medema J, Bijlsma M, Spek C J Cell Mol Med. 2025; 29(3):e70287.

PMID: 39887610 PMC: 11783153. DOI: 10.1111/jcmm.70287.


Cyclin-dependent Kinase 5 and Neurodegenerative Diseases.

Song M, Qiang Y, Zhao X, Song F Mol Neurobiol. 2024; 61(10):7287-7302.

PMID: 38378992 DOI: 10.1007/s12035-024-04047-1.


Neutrophils facilitate the epicardial regenerative response after zebrafish heart injury.

Peterson E, Sun J, Chen X, Wang J Dev Biol. 2024; 508:93-106.

PMID: 38286185 PMC: 10923159. DOI: 10.1016/j.ydbio.2024.01.011.


SHMT2 Mediates Small-Molecule-Induced Alleviation of Alzheimer Pathology Via the 5'UTR-dependent ADAM10 Translation Initiation.

Song L, Pan Q, Zhou G, Liu S, Zhu B, Lin P Adv Sci (Weinh). 2024; 11(11):e2305260.

PMID: 38183387 PMC: 10953581. DOI: 10.1002/advs.202305260.


Examination of the Impact of Triazole Position within Linkers on Solubility and Lipophilicity of a CDK9 Degrader Series.

Ayinde O, Sharpe C, Stahl E, Tokarski 2nd R, Lerma J, Muthusamy N ACS Med Chem Lett. 2023; 14(7):936-942.

PMID: 37465296 PMC: 10351057. DOI: 10.1021/acsmedchemlett.3c00082.