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Updated: Feb 28, 2026

Experimental Approaches to Study Mitochondrial Localization and Function of a Nuclear Cell Cycle Kinase, Cdk1
Published on: February 25, 2016
The metabolic function of cyclin D3-CDK6 kinase in cancer cell survival
Haizhen Wang1,2, Brandon N Nicolay3, Joel M Chick4
1Department of Cancer Biology, Dana-Farber Cancer Institute, Boston, Massachusetts 02215, USA.
Abstract:
D-type cyclins (D1, D2 and D3) and their associated cyclin-dependent kinases (CDK4 and CDK6) are components of the core cell cycle machinery that drives cell proliferation. Inhibitors of CDK4 and CDK6 are currently being tested in clinical trials for patients with several cancer types, with promising results. Here, using human cancer cells and patient-derived xenografts in mice, we show that the cyclin D3-CDK6 kinase phosphorylates and inhibits the catalytic activity of two key enzymes in the glycolytic pathway, 6-phosphofructokinase and pyruvate kinase M2. This re-directs the glycolytic intermediates into the pentose phosphate (PPP) and serine pathways. Inhibition of cyclin D3-CDK6 in tumour cells reduces flow through the PPP and serine pathways, thereby depleting the antioxidants NADPH and glutathione. This, in turn, increases the levels of reactive oxygen species and causes apoptosis of tumour cells. The pro-survival function of cyclin D-associated kinase operates in tumours expressing high levels of cyclin D3-CDK6 complexes. We propose that measuring the levels of cyclin D3-CDK6 in human cancers might help to identify tumour subsets that undergo cell death and tumour regression upon inhibition of CDK4 and CDK6. Cyclin D3-CDK6, through its ability to link cell cycle and cell metabolism, represents a particularly powerful oncoprotein that affects cancer cells at several levels, and this property can be exploited for anti-cancer therapy.
Insights
Cyclin D3-CDK6 kinase regulates cancer cell metabolism by redirecting glycolysis. Inhibiting this complex depletes antioxidants, increasing reactive oxygen species and causing cancer cell death.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Metabolism
Background:
- D-type cyclins and cyclin-dependent kinases (CDKs) 4/6 are crucial for cell proliferation.
- CDK4/6 inhibitors show promise in clinical cancer trials.
Purpose of the Study:
- To investigate the role of cyclin D3-CDK6 in cancer cell metabolism and its therapeutic implications.
Main Methods:
- Utilized human cancer cells and patient-derived xenografts in mice.
- Analyzed the effect of cyclin D3-CDK6 on glycolytic enzymes and metabolic pathways.
Main Results:
- Cyclin D3-CDK6 phosphorylates and inhibits 6-phosphofructokinase and pyruvate kinase M2.
- This redirects intermediates to pentose phosphate (PPP) and serine pathways.
- Inhibition of cyclin D3-CDK6 depletes NADPH and glutathione, increasing reactive oxygen species and inducing apoptosis.
Conclusions:
- Cyclin D3-CDK6 links cell cycle and metabolism, acting as an oncoprotein.
- Measuring cyclin D3-CDK6 levels may identify tumors responsive to CDK4/6 inhibition therapy.
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