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Updated: May 26, 2026

Alignment of Synchronized Time-Series Data Using the Characterizing Loss of Cell Cycle Synchrony Model for Cross-Experiment Comparisons
Published on: June 9, 2023
Molecular systems biology of Sic1 in yeast cell cycle regulation through multiscale modeling
1Institute for Biology, Humboldt University Berlin, Invalidenstr. 42, 10115 Berlin, Germany. matteo.barberis@biologie.hu-berlin.de
Abstract:
Cell cycle control is highly regulated to guarantee the precise timing of events essential for cell growth, i.e., DNA replication onset and cell division. Failure of this control plays a role in cancer and molecules called cyclin-dependent kinase (Cdk) inhibitors (Ckis) exploit a critical function in cell cycle timing. Here we present a multiscale modeling where experimental and computational studies have been employed to investigate structure, function and temporal dynamics of the Cki Sic1 that regulates cell cycle progression in Saccharomyces cerevisiae. Structural analyses reveal molecular details of the interaction between Sic1 and Cdk/cyclin complexes, and biochemical investigation reveals Sic1 function in analogy to its human counterpart p27(Kip1), whose deregulation leads to failure in timing of kinase activation and, therefore, to cancer. Following these findings, a bottom-up systems biology approach has been developed to characterize modular networks addressing Sic1 regulatory function. Through complementary experimentation and modeling, we suggest a mechanism that underlies Sic1 function in controlling temporal waves of cyclins to ensure correct timing of the phase-specific Cdk activities.
Insights
The cyclin-dependent kinase inhibitor Sic1 controls cell cycle timing in yeast. This study reveals Sic1
Area of Science:
- Cell Biology
- Biochemistry
- Systems Biology
Background:
- Cell cycle control is crucial for cell growth, with disruptions linked to cancer.
- Cyclin-dependent kinase inhibitors (Ckis) are key regulators of cell cycle timing.
Purpose of the Study:
- To investigate the structure, function, and temporal dynamics of the Cki Sic1 in Saccharomyces cerevisiae.
- To elucidate the regulatory mechanisms underlying Sic1's role in cell cycle progression.
Main Methods:
- Multiscale modeling integrating experimental and computational studies.
- Structural analyses of Sic1-Cdk/cyclin interactions.
- Biochemical investigations and systems biology approaches.
Main Results:
- Detailed molecular interactions between Sic1 and Cdk/cyclin complexes were revealed.
- Sic1's function was found analogous to human p27(Kip1), highlighting conserved roles in cell cycle regulation.
- A bottom-up systems biology model characterized modular networks governing Sic1's regulatory function.
Conclusions:
- Sic1 plays a critical role in ensuring the correct timing of Cdk activities through temporal control of cyclins.
- The findings provide insights into conserved mechanisms of cell cycle regulation and potential implications for cancer research.
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