Impact of G-Quadruplexes on the Regulation of Genome Integrity, DNA Damage and Repair
DNA G-quadruplexes (G4s) are known to be an integral part of the complex regulatory systems in both normal and pathological cells. At the same time, the ability of G4s to impede DNA replication plays a critical role in genome integrity. This review summarizes the results of recent studies of G4-mediated genomic and epigenomic instability, together with associated DNA damage and repair processes. Although the underlying mechanisms remain to be elucidated, it is known that, among the proteins that recognize G4 structures, many are linked to DNA repair. We analyzed the possible role of G4s in promoting double-strand DNA breaks, one of the most deleterious DNA lesions, and their repair via error-prone mechanisms. The patterns of G4 damage, with a focus on the introduction of oxidative guanine lesions, as well as their removal from G4 structures by canonical repair pathways, were also discussed together with the effects of G4s on the repair machinery. According to recent findings, there must be a delicate balance between G4-induced genome instability and G4-promoted repair processes. A broad overview of the factors that modulate the stability of G4 structures in vitro and in vivo is also provided here.
Top-30
Journals
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10
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International Journal of Molecular Sciences
10 publications, 18.52%
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Molecules
3 publications, 5.56%
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Nucleic Acids Research
3 publications, 5.56%
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Biomedicines
2 publications, 3.7%
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bioRxiv
2 publications, 3.7%
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Biochimie
2 publications, 3.7%
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Biomolecules
1 publication, 1.85%
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International Journal of Biological Macromolecules
1 publication, 1.85%
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Environmental Pollution
1 publication, 1.85%
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Nanoscale
1 publication, 1.85%
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DNA
1 publication, 1.85%
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Genes
1 publication, 1.85%
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Biochemistry (Moscow)
1 publication, 1.85%
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Life
1 publication, 1.85%
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Vaccines
1 publication, 1.85%
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iScience
1 publication, 1.85%
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Molecular Diversity
1 publication, 1.85%
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Brain Pathology
1 publication, 1.85%
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European Journal of Medicinal Chemistry
1 publication, 1.85%
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Medicinal Chemistry Research
1 publication, 1.85%
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Nature Communications
1 publication, 1.85%
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DNA Repair
1 publication, 1.85%
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Journal of Physical Chemistry B
1 publication, 1.85%
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FEBS Letters
1 publication, 1.85%
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Critical Reviews in Biotechnology
1 publication, 1.85%
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ACS Bio & Med Chem Au
1 publication, 1.85%
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Proceedings of the National Academy of Sciences of the United States of America
1 publication, 1.85%
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Microchemical Journal
1 publication, 1.85%
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Chemistry - A European Journal
1 publication, 1.85%
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10
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Publishers
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5
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15
20
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MDPI
20 publications, 37.04%
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Elsevier
11 publications, 20.37%
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Cold Spring Harbor Laboratory
5 publications, 9.26%
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Springer Nature
5 publications, 9.26%
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Oxford University Press
3 publications, 5.56%
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Wiley
3 publications, 5.56%
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American Chemical Society (ACS)
2 publications, 3.7%
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Royal Society of Chemistry (RSC)
1 publication, 1.85%
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Pleiades Publishing
1 publication, 1.85%
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Taylor & Francis
1 publication, 1.85%
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Proceedings of the National Academy of Sciences (PNAS)
1 publication, 1.85%
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Korean Society for Biochemistry and Molecular Biology - BMB Reports
1 publication, 1.85%
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5
10
15
20
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- We do not take into account publications without a DOI.
- Statistics recalculated weekly.