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SPO11-Independent DNA Repair Foci and Their Role in Meiotic Silencing

Authors :
Carofiglio, F. (Fabrizia)
Inagaki, A. (Akiko)
Vries, S.I. (Sanne) de
Wassenaar, E. (Evelyne)
Schoenmakers, S. (Sam)
Vermeulen, C. (Christie)
Cappellen, W.A. (Gert) van
Sleddens-Linkels, E. (Esther)
Grootegoed, J.A. (Anton)
Riele, H.P.J. (Hein) te
Massy, B. (Bernard) de
Baarends, W.M. (Willy)
Carofiglio, F. (Fabrizia)
Inagaki, A. (Akiko)
Vries, S.I. (Sanne) de
Wassenaar, E. (Evelyne)
Schoenmakers, S. (Sam)
Vermeulen, C. (Christie)
Cappellen, W.A. (Gert) van
Sleddens-Linkels, E. (Esther)
Grootegoed, J.A. (Anton)
Riele, H.P.J. (Hein) te
Massy, B. (Bernard) de
Baarends, W.M. (Willy)
Publication Year :
2013

Abstract

In mammalian meiotic prophase, the initial steps in repair of SPO11-induced DNA double-strand breaks (DSBs) are required to obtain stable homologous chromosome pairing and synapsis. The X and Y chromosomes pair and synapse only in the short pseudo-autosomal regions. The rest of the chromatin of the sex chromosomes remain unsynapsed, contains persistent meiotic DSBs, and the whole so-called XY body undergoes meiotic sex chromosome inactivation (MSCI). A more general mechanism, named meiotic silencing of unsynapsed chromatin (MSUC), is activated when autosomes fail to synapse. In the absence of SPO11, many chromosomal regions remain unsynapsed, but MSUC takes place only on part of the unsynapsed chromatin. We asked if spontaneous DSBs occur in meiocytes that lack a functional SPO11 protein, and if these might be involved in targeting the MSUC response to part of the unsynapsed chromatin. We generated mice carrying a point mutation that disrupts the predicted catalytic site of SPO11 (Spo11YF/YF), and blocks its DSB-inducing activity. Interestingly, we observed foci of proteins involved in the processing of DNA damage, such as RAD51, DMC1, and RPA, both in Spo11YF/YFand Spo11 knockout meiocytes. These foci preferentially localized to the areas that undergo MSUC and form the so-called pseudo XY body. In SPO11-deficient oocytes, the number o

Details

Database :
OAIster
Notes :
application/pdf, PL o S Genetics (Online) vol. 9 no. 6, English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn929962862
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1371.journal.pgen.1003538