Literature DB >> 18282746

DNA repair decline during mouse spermiogenesis results in the accumulation of heritable DNA damage.

Francesco Marchetti1, Andrew J Wyrobek.   

Abstract

The postmeiotic phase of mouse spermatogenesis (spermiogenesis) is very sensitive to the genomic effects of environmental mutagens because as male germ cells form mature sperm they progressively lose the ability to repair DNA damage. We hypothesized that repeated exposures to mutagens during this repair-deficient phase result in the accumulation of heritable genomic damage in mouse sperm that leads to chromosomal aberrations in zygotes after fertilization. We used a combination of single or fractionated exposures to diepoxybutane (DEB), a component of tobacco smoke, to investigate how differential DNA repair efficiencies during the 3 weeks of spermiogenesis affected the accumulation of DEB-induced heritable damage in early spermatids (21-15 days before fertilization (dbf)), late spermatids (14-8dbf) and sperm (7-1dbf). Analysis of chromosomal aberrations in zygotic metaphases using PAINT/DAPI showed that late spermatids and sperm are unable to repair DEB-induced DNA damage as demonstrated by significant increases (P<0.001) in the frequencies of zygotes with chromosomal aberrations. Comparisons between single and fractionated exposures suggested that the DNA repair-deficient window during late spermiogenesis may be less than 2 weeks in the mouse and that during this repair-deficient window there is accumulation of DNA damage in sperm. Finally, the dose-response study in sperm indicated a linear response for both single and repeated exposures. These findings show that the differential DNA repair capacity of postmeiotic male germ cells has a major impact on the risk of paternally transmitted heritable damage and suggest that chronic exposures that may occur in the weeks prior to fertilization because of occupational or lifestyle factors (i.e., smoking) can lead to an accumulation of genetic damage in sperm and result in heritable chromosomal aberrations of paternal origin.

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Year:  2008        PMID: 18282746     DOI: 10.1016/j.dnarep.2007.12.011

Source DB:  PubMed          Journal:  DNA Repair (Amst)        ISSN: 1568-7856


  17 in total

1.  Chromosomal mosaicism in mouse two-cell embryos after paternal exposure to acrylamide.

Authors:  Francesco Marchetti; Jack Bishop; Xiu Lowe; Andrew J Wyrobek
Journal:  Toxicol Sci       Date:  2008-10-16       Impact factor: 4.849

2.  Male exposure to bisphenol A (BPA) and semen quality in the Home Observation of Periconceptional Exposures (HOPE) cohort.

Authors:  Sarah Hatch Pollard; Kyley J Cox; Brenna E Blackburn; Diana G Wilkins; Douglas T Carrell; Joseph B Stanford; Christina A Porucznik
Journal:  Reprod Toxicol       Date:  2019-08-21       Impact factor: 3.143

3.  Positive rheotaxis extended drop: a one-step procedure to select and recover sperm with mature chromatin for intracytoplasmic sperm injection.

Authors:  Hamilton De Martin; Marcello S Cocuzza; Bruno C Tiseo; Guilherme J A Wood; Eduardo P Miranda; Pedro A A Monteleone; José Maria Soares; Paulo C Serafini; Miguel Srougi; Edmund C Baracat
Journal:  J Assist Reprod Genet       Date:  2017-09-19       Impact factor: 3.412

4.  Paternal DNA damage resulting from various sperm treatments persists after fertilization and is similar before and after DNA replication.

Authors:  Yasuhiro Yamauchi; Jonathan M Riel; Monika A Ward
Journal:  J Androl       Date:  2011-05-05

5.  Phospho-Cdc25 correlates with activating G2/M checkpoint in mouse zygotes fertilized with hydrogen peroxide-treated mouse sperm.

Authors:  Yu Song; Zhiling Li; Bin Wang; Jianfeng Xiao; Xiaoyan Wang; Jiliang Huang
Journal:  Mol Cell Biochem       Date:  2014-07-11       Impact factor: 3.396

6.  Paternal benzo[a]pyrene exposure affects gene expression in the early developing mouse embryo.

Authors:  Asgeir Brevik; Birgitte Lindeman; Vendula Rusnakova; Ann-Karin Olsen; Gunnar Brunborg; Nur Duale
Journal:  Toxicol Sci       Date:  2012-05-28       Impact factor: 4.849

7.  Occupational exposure to benzene and chromosomal structural aberrations in the sperm of Chinese men.

Authors:  Francesco Marchetti; Brenda Eskenazi; Rosana H Weldon; Guilan Li; Luoping Zhang; Stephen M Rappaport; Thomas E Schmid; Caihong Xing; Elaine Kurtovich; Andrew J Wyrobek
Journal:  Environ Health Perspect       Date:  2011-11-15       Impact factor: 9.031

8.  Transgenic rodent assay for quantifying male germ cell mutant frequency.

Authors:  Jason M O'Brien; Marc A Beal; John D Gingerich; Lynda Soper; George R Douglas; Carole L Yauk; Francesco Marchetti
Journal:  J Vis Exp       Date:  2014-08-06       Impact factor: 1.355

9.  Meiotic interstrand DNA damage escapes paternal repair and causes chromosomal aberrations in the zygote by maternal misrepair.

Authors:  Francesco Marchetti; Jack Bishop; John Gingerich; Andrew J Wyrobek
Journal:  Sci Rep       Date:  2015-01-08       Impact factor: 4.379

10.  Programmed genetic instability: a tumor-permissive mechanism for maintaining the evolvability of higher species through methylation-dependent mutation of DNA repair genes in the male germ line.

Authors:  Yongzhong Zhao; Richard J Epstein
Journal:  Mol Biol Evol       Date:  2008-06-04       Impact factor: 16.240

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