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Updated: Jun 6, 2026

Single-Molecule Fluorescence Visualization of DNA Polymerase Dynamics at G-Quadruplexes
Published on: April 4, 2025
DNA polymerases and carcinogenesis
V M Krutyakov1, T P Kravetskaya
1Konstantinov Petersburg Institute of Nuclear Physics, Russian Academy of Sciences, Gatchina, 188300, Leningrad Region, Russia. krav@omrb.pnpi.spb.ru
Human cancer cells accumulate far more mutations than expected from normal cell division. Specialized, inaccurate DNA polymerases bypass DNA damage, contributing to the high mutation rates observed in cancer.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- Human cancer cells exhibit extensive mutations, exceeding those predicted by normal cell division rates.
- The accumulation of 6-12 carcinogenic mutations typically affects ~150 genes, insufficient to explain the vast number of mutations in cancer cells.
- DNA mutations are changes in nucleotide sequences, often resulting from errors during DNA replication and repair.
Purpose of the Study:
- To review the fundamental features of specialized, inaccurate DNA polymerases.
- To discuss the mechanisms by which these polymerases contribute to the high mutation rates in cancer.
- To explore the switching mechanisms between accurate and inaccurate DNA polymerases during DNA synthesis and repair.
Main Methods:
- Review of existing literature on DNA polymerases and their roles in DNA replication and repair.
- Analysis of the mechanisms of inaccurate DNA synthesis and bypass of DNA lesions.
- Discussion of polymerase switching events and their modification during carcinogenesis.
Main Results:
- Inaccurate DNA polymerases (e.g., β, ζ, η, θ, ι, κ, λ, µ, σ, ν, Rev1) are crucial for bypassing DNA lesions.
- These specialized polymerases exhibit particularly low accuracy during synthesis on undamaged DNA.
- DNA synthesis temporarily halts at lesions but is resumed by inaccurate polymerases, followed by a switch to accurate polymerases (α, δ, ε, γ).
Conclusions:
- Inaccurate DNA polymerases play a significant role in generating the high mutation burden observed in human cancer cells.
- The interplay between inaccurate and accurate DNA polymerases, including their switching mechanisms, is critical in the context of carcinogenesis.
- Understanding these polymerase functions is essential for comprehending cancer development and potentially developing targeted therapies.
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