Related Experiment Video
Updated: Feb 27, 2026

Studying Cell Cycle-regulated Gene Expression by Two Complementary Cell Synchronization Protocols
Published on: June 6, 2017
TRAP1 controls cell cycle G2-M transition through the regulation of CDK1 and MAD2 expression/ubiquitination
Lorenza Sisinni1, Francesca Maddalena1, Valentina Condelli1
1Laboratory of Pre-clinical and Translational Research, IRCCS, Referral Cancer Center of Basilicata, Rionero in Vulture, Italy.
Abstract:
Regulation of tumour cell proliferation by molecular chaperones is still a complex issue. Here, the role of the HSP90 molecular chaperone TRAP1 in cell cycle regulation was investigated in a wide range of human breast, colorectal, and lung carcinoma cell lines, and tumour specimens. TRAP1 modulates the expression and/or the ubiquitination of key cell cycle regulators through a dual mechanism: (i) transcriptional regulation of CDK1, CYCLIN B1, and MAD2, as suggested by gene expression profiling of TRAP1-silenced breast carcinoma cells; and (ii) post-transcriptional quality control of CDK1 and MAD2, being the ubiquitination of these two proteins enhanced upon TRAP1 down-regulation. Mechanistically, TRAP1 quality control on CDK1 is crucial for its regulation of mitotic entry, since TRAP1 interacts with CDK1 and prevents CDK1 ubiquitination in cooperation with the proteasome regulatory particle TBP7, this representing the limiting factor in TRAP1 regulation of the G2-M transition. Indeed, TRAP1 silencing results in enhanced CDK1 ubiquitination, lack of nuclear translocation of CDK1/cyclin B1 complex, and increased MAD2 degradation, whereas CDK1 forced up-regulation partially rescues low cyclin B1 and MAD2 levels and G2-M transit in a TRAP1-poor background. Consistently, the CDK1 inhibitor RO-3306 is less active in a TRAP1-high background. Finally, a significant correlation was observed between TRAP1 and Ki67, CDK1 and/or MAD2 expression in breast, colorectal, and lung human tumour specimens. This study represents the first evidence that TRAP1 is relevant in the control of the complex machinery that governs cell cycle progression and mitotic entry and provides a strong rationale to regard TRAP1 as a biomarker to select tumours with deregulated cell cycle progression and thus likely poorly responsive to novel cell cycle inhibitors. Copyright © 2017 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
Insights
The molecular chaperone TRAP1 (heat shock protein 90 kDa) regulates cancer cell proliferation by controlling key cell cycle proteins. TRAP1 acts as a biomarker for predicting tumor response to cell cycle inhibitors.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Tumor cell proliferation is complexly regulated by molecular chaperones.
- The role of TRAP1, a heat shock protein 90 kDa (HSP90) chaperone, in cancer cell cycle regulation remains incompletely understood.
Purpose of the Study:
- To investigate the role of TRAP1 in regulating cell cycle progression in human breast, colorectal, and lung carcinoma.
- To elucidate the mechanisms by which TRAP1 influences key cell cycle regulators.
Main Methods:
- Gene expression profiling of TRAP1-silenced breast carcinoma cells.
- Analysis of protein ubiquitination and degradation.
- Interaction studies between TRAP1, CDK1, and TBP7.
- Assessment of cell cycle progression (G2-M transition).
- Evaluation of therapeutic response to CDK1 inhibitor RO-3306.
- Correlation analysis of TRAP1 expression with tumor markers (Ki67, CDK1, MAD2) in patient specimens.
Main Results:
- TRAP1 modulates cell cycle regulators (CDK1, Cyclin B1, MAD2) via transcriptional and post-transcriptional mechanisms.
- TRAP1 prevents CDK1 ubiquitination and degradation, crucial for mitotic entry.
- TRAP1 silencing enhances CDK1 ubiquitination, disrupts nuclear translocation of CDK1/cyclin B1, and increases MAD2 degradation.
- Forced CDK1 up-regulation partially rescues cell cycle progression in TRAP1-deficient cells.
- CDK1 inhibitor RO-3306 efficacy is reduced in TRAP1-high tumors.
- TRAP1 expression correlates with Ki67, CDK1, and MAD2 in various human tumors.
Conclusions:
- TRAP1 plays a significant role in controlling cell cycle progression and mitotic entry.
- TRAP1 is a potential biomarker for identifying tumors with deregulated cell cycle progression.
- TRAP1 may predict poor responsiveness to novel cell cycle inhibitors, guiding therapeutic strategies.
Related Concept Videos
Inhibition of Cdk Activity
Negative Regulator Molecules
M-Cdk Drives Transition Into Mitosis
Cyclin-dependent kinases, or Cdks, work in concert with cyclins to control cell cycle transitions. M-Cdk, a complex of Cdk1 bound to M cyclin, is a well-known example of this coordinated control that drives the transition from the G2 to the M phase.
M cyclin...
The Cell Cycle Control System
Cyclins and cyclin-dependent kinases (Cdks) are the primary cell cycle regulators and...
The Cell Cycle Control System
Positive Regulator Molecules

