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Updated: Aug 2, 2025

Studying Cell Cycle-regulated Gene Expression by Two Complementary Cell Synchronization Protocols
Published on: June 6, 2017
Mechanism of cell cycle regulation and cell proliferation during human viral infection
Mamta Panda1, Elora Kalita1, Abhishek Rao1
1Department of Biochemistry, School of Life Sciences, Central University of Rajasthan, Bandarsindri, Kishangarh, Ajmer, Rajasthan, India.
Abstract:
Over the history of the coevolution of Host viral interaction, viruses have customized the host cellular machinery into their use for viral genome replication, causing effective infection and ultimately aiming for survival. They do so by inducing subversions to the host cellular pathways like cell cycle via dysregulation of important cell cycle checkpoints by viral encoded proteins, arresting the cell cycle machinery, blocking cytokinesis as well as targeting subnuclear bodies, thus ultimately disorienting the cell proliferation. Both DNA and RNA viruses have been active participants in such manipulation resulting in serious outcomes of cancer. They achieve this by employing different mechanisms-Protein-protein interaction, protein-phosphorylation, degradation, redistribution, viral homolog, and viral regulation of APC at different stages of cell cycle events. Several DNA viruses cause the quiescent staged cells to undergo cell cycle which increases nucleotide pools logistically significantly persuading viral replication whereas few other viruses arrest a particular stage of cell cycle. This allows the latter group to sustain the infection which allows them to escape host immune response and support viral multiplication. Mechanical study of signaling such viral mediated pathways could give insight into understanding the etiology of tumorigenesis and progression. Overall this chapter highlights the possible strategies employed by DNA/RNA viral families which impact the normal cell cycle but facilitate viral infected cell replication. Such information could contribute to comprehending viral infection-associated disorders to further depth.
Insights
Viruses manipulate host cell cycles for replication, causing cancer. Understanding these viral strategies is key to developing treatments for infection-associated disorders.
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Viruses coevolve with hosts, hijacking cellular machinery for replication.
- Viral manipulation of host cell cycle pathways can lead to cancer.
- Both DNA and RNA viruses employ diverse mechanisms to control host cell functions.
Purpose of the Study:
- To highlight viral strategies impacting host cell cycle regulation.
- To explore how viruses facilitate their own replication through cell cycle manipulation.
- To provide insights into viral infection-associated disorders and tumorigenesis.
Main Methods:
- Analysis of viral mechanisms affecting cell cycle checkpoints.
- Investigation of protein-protein interactions, phosphorylation, and degradation.
- Examination of viral regulation of the Anaphase-Promoting Complex (APC).
Main Results:
- Viruses dysregulate cell cycle checkpoints, arresting or altering cell proliferation.
- Specific viral strategies include targeting subnuclear bodies and blocking cytokinesis.
- Some viruses induce cell cycle entry in quiescent cells, others cause arrest at specific stages.
Conclusions:
- Viral manipulation of the cell cycle is crucial for viral replication and survival.
- Understanding these mechanisms aids in comprehending cancer etiology and viral pathogenesis.
- This knowledge can contribute to deeper insights into viral infection-associated diseases.
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