Related Experiment Video
Updated: Jul 13, 2026

Analyzing Telomeric Protein-DNA Interactions Using Single-Molecule Magnetic Tweezers
Published on: August 30, 2024
Interaction between human telomere and a carbazole derivative: a molecular dynamics simulation of a quadruplex
Dah-Yen Yang1, Ta-Chau Chang, Sheh-Yi Sheu
1Department of Life Sciences and Institute of Genome Sciences, Institute of Bioinformatics, and Structural Biology Program, National Yang-Ming University, Taipei 112, Taiwan.
Abstract:
The mechanism of inhibition of telomerase by drugs is a key factor in an understanding of guanine-quadruplex complex stabilization during human cancer. This study describes a simulated annealing docking and molecular dynamics simulation to investigate a synthesized potent inhibitor, 3,6-bis(1-methyl-4-vinylpyridinium iodine) carbazole (BMVC), which stabilizes the quadruplex structure of the human telomeric DNA sequence d[AG3(T(2)AG(3))3] and inhibits telomerase activity. The compound was predicted to selectively interact with the quadruplex structure. During our simulation, the binding affinities were calculated and used to predict the best drug-binding sites as well as enhanced selectivity compared with other compounds. Our studies suggest that the simulation results quite coincide with the experimental results. In addition, molecular modeling shows that a 2:1 binding model involving the external binding of BMVC to both ends of the G-quartet of d[AG(3)(T(2)AG)3))3] is the most stable binding mode and this agrees with the absorbance titration results that show two binding sites. Of particular interest is that one pyridinium ring and carbazole moiety of the BMVC can stack well at the end of G-quartet. This implies that BMVC is a good human quadruplex stabilizer and also a good telomerase inhibitor.
Insights
This study reveals that the synthesized compound BMVC effectively stabilizes human telomeric DNA quadruplex structures. BMVC acts as a potent telomerase inhibitor, showing promise for cancer therapy.
Area of Science:
- Biochemistry
- Computational Chemistry
- Molecular Biology
Background:
- Telomerase inhibition is crucial for understanding human cancer.
- Guanine-quadruplex stabilization is a key mechanism in drug development.
Purpose of the Study:
- To investigate the synthesized compound BMVC as a potential telomerase inhibitor.
- To explore BMVC's mechanism in stabilizing human telomeric DNA quadruplex structures.
Main Methods:
- Simulated annealing docking and molecular dynamics simulations were employed.
- Binding affinities and drug-binding sites were predicted computationally.
- Computational findings were validated against experimental results.
Main Results:
- BMVC selectively interacts with the quadruplex structure of human telomeric DNA.
- A stable 2:1 binding model of BMVC to the G-quartet was identified.
- BMVC demonstrated good quadruplex stabilization and telomerase inhibition.
Conclusions:
- BMVC is a potent human quadruplex stabilizer and telomerase inhibitor.
- Computational simulations align well with experimental observations.
- BMVC shows potential as a therapeutic agent in cancer treatment.
Related Concept Videos
Telomeres and Telomerase
Telomeres and Telomerase
Replicative Cell Senescence
Replication in Eukaryotes
Many Proteins Orchestrate Replication at the Origin
Eukaryotic replication follows many of the same...
DNA Helicases

