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Updated: Jan 22, 2026

Telomere Length and Telomerase Activity; A Yin and Yang of Cell Senescence
Published on: May 22, 2013
Topological DNA damage, telomere attrition and T cell senescence during chronic viral infections
Yingjie Ji1,2, Xindi Dang1,3, Lam Ngoc Thao Nguyen1,3
11Center of Excellence in Inflammation, Infectious Disease and Immunity, James H. Quillen College of Medicine, East Tennessee State University, Johnson City, TN 37614 USA.
Background:
T cells play a key role in controlling viral infections; however, the underlying mechanisms regulating their functions during human viral infections remain incompletely understood. Here, we used CD4 T cells derived from individuals with chronic viral infections or healthy T cells treated with camptothecin (CPT) - a topoisomerase I (Top 1) inhibitor - as a model to investigate the role of DNA topology in reprogramming telomeric DNA damage responses (DDR) and remodeling T cell functions.
Results:
We demonstrated that Top 1 protein expression and enzyme activity were significantly inhibited, while the Top 1 cleavage complex (TOP1cc) was trapped in genomic DNA, in T cells derived from individuals with chronic viral (HCV, HBV, or HIV) infections. Top 1 inhibition by CPT treatment of healthy CD4 T cells caused topological DNA damage, telomere attrition, and T cell apoptosis or dysfunction via inducing Top1cc accumulation, PARP1 cleavage, and failure in DNA repair, thus recapitulating T cell dysregulation in the setting of chronic viral infections. Moreover, T cells from virally infected subjects with inhibited Top 1 activity were more vulnerable to CPT-induced topological DNA damage and cell apoptosis, indicating an important role for Top 1 in securing DNA integrity and cell survival.
Conclusion:
These findings provide novel insights into the molecular mechanisms for immunomodulation by chronic viral infections via disrupting DNA topology to induce telomeric DNA damage, T cell senescence, apoptosis and dysfunction. As such, restoring the impaired DNA topologic machinery may offer a new strategy for maintaining T cell function against human viral diseases.
Insights
Chronic viral infections impair T cell function by disrupting DNA topology, leading to DNA damage and cell dysfunction. Restoring DNA topoisomerase I (Top 1) activity may preserve T cell function in viral diseases.
Area of Science:
- Immunology
- Molecular Biology
- Virology
Background:
- T cell function is crucial for controlling viral infections but poorly understood in humans.
- Chronic viral infections (HCV, HBV, HIV) impact T cell regulation.
- Investigating DNA topology's role in T cell dysfunction during viral infections.
Purpose of the Study:
- To investigate the role of DNA topology in T cell dysfunction during chronic viral infections.
- To explore the impact of topoisomerase I (Top 1) inhibition on T cell responses.
- To model T cell dysregulation using camptothecin (CPT) in healthy T cells.
Main Methods:
- Analyzing T cells from individuals with chronic viral infections.
- Treating healthy CD4 T cells with camptothecin (CPT), a Top 1 inhibitor.
- Assessing DNA damage responses (DDR), telomere length, and cell apoptosis/dysfunction.
Main Results:
- Top 1 activity and expression were inhibited in T cells from chronically infected individuals.
- CPT treatment induced topological DNA damage, telomere attrition, and T cell apoptosis/dysfunction.
- Inhibited Top 1 activity increased T cell vulnerability to DNA damage and apoptosis.
Conclusions:
- Chronic viral infections disrupt DNA topology, causing T cell senescence, apoptosis, and dysfunction.
- Impaired DNA topologic machinery contributes to immunomodulation in viral diseases.
- Restoring DNA topologic machinery may be a therapeutic strategy for viral infections.
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