A novel pyrazolo[1,5-a]pyrimidine is a potent inhibitor of cyclin-dependent protein kinases 1, 2, and 9, which demonstrates antitumor effects in human tumor xenografts following oral administration.

Symplectic ID
2027399
Source
Europe PubMed Central
Last Synced with Symplectic
Friday, 28 August, 2026 - 22:27
DOI
10.1021/jm100732t
Publication Date
Wednesday, 1 December, 2010
First Page
8508
Last Page
8522
Keywords
Cell Line, Tumor
Microsomes, Liver
Animals
Humans
Mice
Mice, Nude
Pyrazoles
Pyrimidines
Blood Proteins
Antineoplastic Agents
Crystallography, X-Ray
Administration, Oral
Xenograft Model Antitumor Assays
Cell Cycle
Cell Proliferation
Protein Binding
Structure-Activity Relationship
Biological Availability
Phosphorylation
Stereoisomerism
Models, Molecular
Female
Cyclin-Dependent Kinase 9
Cyclin-Dependent Kinase 2
In Vitro Techniques
Authors
Heathcote, DA
Patel, H
Kroll, SHB
Hazel, P
Periyasamy, M
Alikian, M
Kanneganti, SK
Jogalekar, AS
Scheiper, B
Barbazanges, M
Blum, A
Brackow, J
Authors list has been truncated
1
Editors list has been truncated
Abstract
Cyclin-dependent protein kinases (CDKs) are central to the appropriate regulation of cell proliferation, apoptosis, and gene expression. Abnormalities in CDK activity and regulation are common features of cancer, making CDK family members attractive targets for the development of anticancer drugs. Here, we report the identification of a pyrazolo[1,5-a]pyrimidine derived compound, 4k (BS-194), as a selective and potent CDK inhibitor, which inhibits CDK2, CDK1, CDK5, CDK7, and CDK9 (IC₅₀= 3, 30, 30, 250, and 90 nmol/L, respectively). Cell-based studies showed inhibition of the phosphorylation of CDK substrates, Rb and the RNA polymerase II C-terminal domain, down-regulation of cyclins A, E, and D1, and cell cycle block in the S and G₂/M phases. Consistent with these findings, 4k demonstrated potent antiproliferative activity in 60 cancer cell lines tested (mean GI₅₀= 280 nmol/L). Pharmacokinetic studies showed that 4k is orally bioavailable, with an elimination half-life of 178 min following oral dosing in mice. When administered at a concentration of 25 mg/kg orally, 4k inhibited human tumor xenografts and suppressed CDK substrate phosphorylation. These findings identify 4k as a novel, potent CDK selective inhibitor with potential for oral delivery in cancer patients.
ISSN
0022-2623
Journal Title
Journal of medicinal chemistry
eISSN
1520-4804
Volume
53
Issue
24
ID at Source
MED:21080703
Publication Status
Published
Open access
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