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DNA Damage and Repair in Human Reproductive Cells
Anaís García Rodríguez, Jaime Gosálvez, Ashok Agarwal, R. Roy, Stephen D. Johnston
International Journal of Molecular Sciences · 2018 · ▲ 151 citations
Abstract
The fundamental underlying paradigm of sexual reproduction is the production of male and female gametes of sufficient genetic difference and quality that, following syngamy, they result in embryos with genomic potential to allow for future adaptive change and the ability to respond to selective pressure. The fusion of dissimilar gametes resulting in the formation of a normal and viable embryo is known as anisogamy, and is concomitant with precise structural, physiological, and molecular control of gamete function for species survival. However, along the reproductive life cycle of all organisms, both male and female gametes can be exposed to an array of "stressors" that may adversely affect the composition and biological integrity of their proteins, lipids and nucleic acids, that may consequently compromise their capacity to produce normal embryos. The aim of this review is to highlight gamete genome organization, differences in the chronology of gamete production between the male and female, the inherent DNA protective mechanisms in these reproductive cells, the aetiology of DNA damage in germ cells, and the remarkable DNA repair mechanisms, pre- and post-syngamy, that function to maintain genome integrity.
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- 10.3390/ijms20010031
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- 2026-09-08 MST
Cite this
APA
Rodríguez, A.G., Gosálvez, J., Agarwal, A., Roy, R., & Johnston, S.D. (2018). DNA Damage and Repair in Human Reproductive Cells. <em>International Journal of Molecular Sciences</em>. https://doi.org/10.3390/ijms20010031
Vancouver
Rodríguez AG, Gosálvez J, Agarwal A, Roy R, Johnston SD. DNA Damage and Repair in Human Reproductive Cells. International Journal of Molecular Sciences. 2018. doi:10.3390/ijms20010031.
BibTeX
@article{anas2018DNADam,
title = {DNA Damage and Repair in Human Reproductive Cells},
author = {Anaís García Rodríguez and Jaime Gosálvez and Ashok Agarwal and R. Roy and Stephen D. Johnston},
journal = {International Journal of Molecular Sciences},
year = {2018},
doi = {10.3390/ijms20010031},
}
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