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Updated: Jul 11, 2026

Analysis of Cell Cycle Position in Mammalian Cells
Published on: January 21, 2012
Structural basis of inhibition of CDK-cyclin complexes by INK4 inhibitors
P D Jeffrey1, L Tong, N P Pavletich
1Cellular Biochemistry and Biophysics Program, Memorial Sloan-Kettering Cancer Center, New York, New York 10021, USA.
Abstract:
The cyclin-dependent kinases 4 and 6 (Cdk4/6) that drive progression through the G(1) phase of the cell cycle play a central role in the control of cell proliferation, and CDK deregulation is a frequent event in cancer. Cdk4/6 are regulated by the D-type cyclins, which bind to CDKs and activate the kinase, and by the INK4 family of inhibitors. INK4 proteins can bind both monomeric CDK, preventing its association with a cyclin, and also the CDK-cyclin complex, forming an inactive ternary complex. In vivo, binary INK4-Cdk4/6 complexes are more abundant than ternary INK4-Cdk4/6-cyclinD complexes, and it has been suggested that INK4 binding may lead to the eventual dissociation of the cyclin. Here we present the 2.9-A crystal structure of the inactive ternary complex between Cdk6, the INK4 inhibitor p18(INK4c), and a D-type viral cyclin. The structure reveals that p18(INK4c) inhibits the CDK-cyclin complex by distorting the ATP binding site and misaligning catalytic residues. p18(INK4c) also distorts the cyclin-binding site, with the cyclin remaining bound at an interface that is substantially reduced in size. These observations support the model that INK4 binding weakens the cyclin's affinity for the CDK. This structure also provides insights into the specificity of the D-type cyclins for Cdk4/6.
Insights
The crystal structure of an inactive Cdk6-p18(INK4c)-cyclin complex reveals how INK4 inhibitors block cell cycle progression. This provides insights into cyclin-dependent kinase regulation and cancer. Keywords: Cdk4/6, cell cycle, cancer, INK4 inhibitors, crystal structure.
Area of Science:
- Molecular Biology
- Structural Biology
- Biochemistry
Background:
- Cyclin-dependent kinases 4 and 6 (Cdk4/6) control cell cycle G1 progression and are crucial for cell proliferation.
- Deregulation of CDKs is common in cancer, making them targets for therapeutic intervention.
- INK4 proteins are key inhibitors of CDK4/6 activity, regulating their function through binding interactions.
Purpose of the Study:
- To elucidate the structural mechanism by which INK4 inhibitors inactivate Cdk4/6-cyclin complexes.
- To provide atomic-level insights into the interaction between Cdk6, p18(INK4c), and a D-type cyclin.
- To understand the specificity of D-type cyclins for Cdk4/6.
Main Methods:
- X-ray crystallography was used to determine the 2.9-Å resolution structure of the ternary complex.
- Biochemical assays were implied to study the binding interactions and inhibitory mechanisms.
Main Results:
- The crystal structure reveals that p18(INK4c) inhibits Cdk6 by distorting the ATP binding site and misaligning catalytic residues.
- p18(INK4c) also alters the cyclin binding site, reducing the interface size and weakening cyclin affinity.
- The findings support a model where INK4 binding promotes cyclin dissociation from the CDK.
Conclusions:
- The structure provides a detailed molecular understanding of INK4-mediated inhibition of Cdk4/6.
- This work sheds light on the regulation of the cell cycle and offers potential avenues for cancer therapy development.
- Insights into D-type cyclin specificity for Cdk4/6 are provided.
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