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PMID: 23813448 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

The senescence-accelerated mouse prone 8 as a model for oxidative stress and impaired DNA repair in the male germ line.

Reproduction (Cambridge, England) ·Vol. 146 ·No. 3 ·2013-09-00 ·Pages 253-62

Smith TB, De Iuliis GN, Lord T, Aitken RJ

Abstract

The discovery of a truncated base excision repair pathway in human spermatozoa mediated by OGG1 has raised questions regarding the effect of mutations in critical DNA repair genes on the integrity of the paternal genome. The senescence-accelerated mouse prone 8 (SAMP8) is a mouse model containing a suite of naturally occurring mutations resulting in an accelerated senescence phenotype largely mediated by oxidative stress, which is further enhanced by a mutation in the Ogg1 gene, greatly reducing the ability of the enzyme to excise 8-hydroxy,2'-deoxyguanosine (8OHdG) adducts. An analysis of the reproductive phenotype of the SAMP8 males revealed a high level of DNA damage in caudal epididymal spermatozoa as measured by the alkaline Comet assay. Furthermore, these lesions were confirmed to be oxidative in nature, as demonstrated by significant increases in 8OHdG adduct formation in the SAMP8 testicular tissue (P<0.05) as well as in mature spermatozoa (P<0.001) relative to a control strain (SAMR1). Despite this high level of oxidative DNA damage in spermatozoa, reactive oxygen species generation was not elevated and motility of spermatozoa was found to be similar to that for the control strain with the exception of progressive motility, which exhibited a slight but significant decline with advancing age (P<0.05). When challenged with Fenton reagents (H2O2 and Fe2+), the SAMP8 spermatozoa demonstrated a highly increased susceptibility to formation of 8OHdG adducts compared with the controls (P<0.001). These data highlight the role of oxidative stress and OGG1-dependent base excision repair mechanisms in defining the genetic integrity of mammalian spermatozoa.

MeSH Terms
Aging/physiology Animals DNA Damage/physiology DNA Glycosylases/physiology DNA Repair/physiology Fertility/physiology Male Mice Models, Animal Oxidative Stress/physiology Phenotype Spermatogenesis/physiology Spermatozoa/metabolism
Chemicals
DNA Glycosylases Ogg1 protein, mouse
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Smith T B
Reproductive Science Group, School of Environmental and Life Sciences, Priority Research Centre in Reproductive Science, Discipline of Biological Sciences, University of Newcastle, Callaghan, New South Wales 2308, Australia.
De Iuliis G N
Lord T
Aitken R J
Article Info
Journal
Reproduction (Cambridge, England)
Abbr.
Reproduction
ISSN
1741-7899
Published
2013-09-00
Epub
2013-00-31
Pages
253-62
Language
English
Region
England
NLM ID
100966036
Subset
IM
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