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Structure-based design, synthesis, and biological evaluation of potent and selective macrocyclic checkpoint kinase 1 inhibitors
- Source :
- Journal of medicinal chemistry. 50(7)
- Publication Year :
- 2007
-
Abstract
- Based on the crystallographic analysis of a urea-checkpoint kinase 1 (Chk1) complex and molecular modeling, a class of macrocyclic Chk1 inhibitors were designed and their biological activities were evaluated. An efficient synthetic methodology for macrocyclic ureas was developed with Grubbs metathesis macrocyclization as the key step. The structure-activity relationship studies demonstrated that the macrocyclization retains full Chk1 inhibition activity and that the 4-position of the phenyl ring can tolerate a wide variety of substituents. These novel Chk1 inhibitors exhibit excellent selectivity over a panel of more than 70 kinases. Compounds 5b, 5c, 5f, 15, 16d, 17g, 17h, 17k, 18d, and 22 were identified as ideal Chk1 inhibitors, which showed little or no single-agent activity but significantly potentiate the cytotoxicities of the DNA-damaging antitumor agents doxorubicin and camptothecin. These novel Chk1 inhibitors abrogate the doxorubicin-induced G2 and camptothecin-induced S checkpoint arrests, confirming that their potent biological activities are mechanism-based through Chk1 inhibition.
- Subjects :
- Models, Molecular
Macrocyclic Compounds
Molecular model
Stereochemistry
Antineoplastic Agents
Crystallography, X-Ray
Chemical synthesis
Structure-Activity Relationship
Cell Line, Tumor
Drug Discovery
medicine
Structure–activity relationship
Humans
Urea
CHEK1
Protein kinase A
Protein Kinase Inhibitors
biology
Chemistry
Kinase
Drug Synergism
Enzyme inhibitor
Doxorubicin
Drug Design
Checkpoint Kinase 1
biology.protein
Molecular Medicine
Camptothecin
biological phenomena, cell phenomena, and immunity
Drug Screening Assays, Antitumor
Protein Kinases
medicine.drug
DNA Damage
Subjects
Details
- ISSN :
- 00222623
- Volume :
- 50
- Issue :
- 7
- Database :
- OpenAIRE
- Journal :
- Journal of medicinal chemistry
- Accession number :
- edsair.doi.dedup.....abf187529d22cb96081b7033121661a5