Male-driven de novo mutations in haploid germ cells

被引:37
作者
Gregoire, Marie-Chantal [1 ]
Massonneau, Julien [1 ]
Simard, Olivier [1 ]
Gouraud, Anne [1 ]
Brazeau, Marc-Andre [1 ]
Arguin, Melina [1 ]
Leduc, Frederic [1 ]
Boissonneault, Guylain [1 ]
机构
[1] Univ Sherbrooke, Dept Biochem, Fac Med & Hlth Sci, Sherbrooke, PQ J1E4K8, Canada
关键词
DNA damage; DNA replication; repair; spermiogenesis; polymorphism; gene mutations; DNA STRAND BREAKS; ELONGATING SPERMATIDS; MOUSE SPERMIOGENESIS; CHROMATIN; REPAIR; HISTONE; ORIGIN; DAMAGE; ACETYLATION; TRANSITION;
D O I
10.1093/molehr/gat022
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
At the sequence level, genetic diversity is provided by de novo transmittable mutations that may act as a substrate for natural selection. The gametogenesis process itself is considered more likely to induce endogenous mutations and a clear male bias has been demonstrated from recent next-generation sequencing analyses. As new experimental evidence accumulates, the post-meiotic events of the male gametogenesis (spermiogenesis) appear as an ideal context to induce de novo genetic polymorphism transmittable to the next generation. It may prove to be a major component of the observed male mutation bias. As spermatids undergo chromatin remodeling, transient endogenous DNA double-stranded breaks are produced and trigger a DNA damage response. In these haploid cells, one would expect that the non-templated, DNA end-joining repair processes may generate a repertoire of sequence alterations in every sperm cell potentially transmittable to the next generation. This may therefore represent a novel physiological mechanism contributing to genetic diversity and evolution.
引用
收藏
页码:495 / 499
页数:5
相关论文
共 46 条
[1]   Understanding what determines the frequency and pattern of human germline mutations [J].
Arnheim, Norman ;
Calabrese, Peter .
NATURE REVIEWS GENETICS, 2009, 10 (07) :478-488
[2]   Histone H4 Acetylation is Essential to Proceed from a Histone- to a Protamine-based Chromatin Structure in Spermatid Nuclei of Drosophila melanogaster [J].
Awe, Stephan ;
Renkawitz-Pohl, Renate .
SYSTEMS BIOLOGY IN REPRODUCTIVE MEDICINE, 2010, 56 (01) :44-61
[3]   Sperm DNA: organization, protection and vulnerability: from basic science to clinical applications-a position report [J].
Barratt, Christopher L. R. ;
Aitken, R. John ;
Bjorndahl, Lars ;
Carrell, Douglas T. ;
de Boer, Peter ;
Kvist, Ulrik ;
Lewis, Sheena E. M. ;
Perreault, Sally D. ;
Perry, Melissa J. ;
Ramos, Liliana ;
Robaire, Bernard ;
Ward, Steven ;
Zini, Armand .
HUMAN REPRODUCTION, 2010, 25 (04) :824-838
[4]   Chromatin remodeling during spermiogenesis: a possible role for the transition proteins in DNA strand break repair [J].
Boissonneault, G .
FEBS LETTERS, 2002, 514 (2-3) :111-114
[5]   The DNA-repair Ku70 protein is located in the nucleus and tail of elongating spermatids in grasshoppers [J].
Cabrero, Josefa ;
Palomino-Morales, Rogelio J. ;
Camacho, Juan Pedro M. .
CHROMOSOME RESEARCH, 2007, 15 (08) :1093-1100
[6]   The comet assay for DNA damage and repair - Principles, applications, and limitations [J].
Collins, AR .
MOLECULAR BIOTECHNOLOGY, 2004, 26 (03) :249-261
[7]   Biased Gene Conversion and the Evolution of Mammalian Genomic Landscapes [J].
Duret, Laurent ;
Galtier, Nicolas .
ANNUAL REVIEW OF GENOMICS AND HUMAN GENETICS, 2009, 10 :285-311
[8]   Characteristics, causes and evolutionary consequences of male-biased mutation [J].
Ellegren, Hans .
PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2007, 274 (1606) :1-10
[9]  
Glaser Rivka L, 2004, Sci Aging Knowledge Environ, V2004, pre1, DOI 10.1126/sageke.2004.3.re1
[10]  
Govin J, 2006, E SCHERING RES FDN W, V57, P155