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Updated: Aug 10, 2026

Analysis of Cell Cycle Position in Mammalian Cells
Published on: January 21, 2012
The p16 status of tumor cell lines identifies small molecule inhibitors specific for cyclin-dependent kinase 4
A Kubo1, K Nakagawa, R K Varma
1Medicine Branch, National Cancer Institute, Bethesda, Maryland 20889, USA.
Abstract:
Loss of p16 functional activity leading to disruption of the p16/cyclin-dependent kinase (CDK) 4:cyclin D/retinoblastoma pathway is the most common event in human tumorigenesis, suggesting that compounds with CDK4 kinase inhibitory activity may be useful to regulate cancer cell growth. To identify such inhibitors, the 60 cancer cell lines of the National Cancer Institute drug screen panel were examined for p16 alterations (biallelic deletion, intragenic mutations, or absent p16 protein), and the growth-inhibitory activity of more than 50,000 compounds against these 60 cell lines was compared with their p16 status. One compound, 3-amino thioacridone (3-ATA; NSC 680434), whose growth-inhibitory activity correlated with the p16 status of the cell lines had an IC50 of 3.1 microM in a CDK4 kinase assay. In addition, four compounds structurally related to 3-ATA inhibited CDK4 kinase with IC50s ranging from 0.2-2.0 microM. All five of these compounds were less potent inhibitors of cell division cycle 2 and CDK2 kinases, with IC50s 30- to 500-fold higher than that for CDK4. ATP competition experiments demonstrated a noncompetitive mode of inhibition for 3-ATA (K(i) = 5.5 microM) and a linear mixed mode for benzothiadiazine (NSC 645787; K(i) = 0.73 microM). We have successfully demonstrated a novel approach to identify specific CDK4 kinase inhibitors that may selectively induce growth inhibition of p16-altered tumors.
Insights
Researchers identified novel compounds that inhibit CDK4 kinase, offering a potential strategy for targeting cancers with altered p16 status. These specific inhibitors may selectively disrupt the growth of p16-altered tumors.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Loss of p16 function disrupts the p16/cyclin-dependent kinase (CDK) 4/retinoblastoma pathway, a common event in human tumorigenesis.
- CDK4 kinase inhibitors may offer a therapeutic strategy for regulating cancer cell growth.
Purpose of the Study:
- To identify specific CDK4 kinase inhibitors.
- To correlate compound efficacy with p16 alterations in cancer cell lines.
Main Methods:
- Screened over 50,000 compounds against the National Cancer Institute's 60 cancer cell line panel.
- Assessed cell lines for p16 alterations (deletion, mutation, or absence of p16 protein).
- Utilized CDK4 kinase assays and ATP competition experiments to characterize inhibitor activity and mode.
Main Results:
- Identified 3-amino thioacridone (3-ATA) and four related compounds as CDK4 kinase inhibitors.
- 3-ATA showed an IC50 of 3.1 microM in the CDK4 kinase assay; related compounds had IC50s from 0.2-2.0 microM.
- Compounds demonstrated selectivity for CDK4 over CDK2 and cell division cycle 2 kinases.
Conclusions:
- A novel approach successfully identified specific CDK4 kinase inhibitors.
- These inhibitors may selectively induce growth inhibition in p16-altered tumors.
- Compounds like 3-ATA represent potential therapeutic agents for specific cancer types.
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