Cargando…

The DNA damage response is required for oocyte cyst breakdown and follicle formation in mice

Mammalian oogonia proliferate without completing cytokinesis, forming cysts. Within these, oocytes differentiate and initiate meiosis, promoting double-strand break (DSBs) formation, which are repaired by homologous recombination (HR) causing the pairing and synapsis of the homologs. Errors in these...

Descripción completa

Detalles Bibliográficos
Autores principales: Martínez-Marchal, Ana, Huang, Yan, Guillot-Ferriols, Maria Teresa, Ferrer-Roda, Mònica, Guixé, Anna, Garcia-Caldés, Montserrat, Roig, Ignasi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7710113/
https://www.ncbi.nlm.nih.gov/pubmed/33206637
http://dx.doi.org/10.1371/journal.pgen.1009067
_version_ 1783617882616233984
author Martínez-Marchal, Ana
Huang, Yan
Guillot-Ferriols, Maria Teresa
Ferrer-Roda, Mònica
Guixé, Anna
Garcia-Caldés, Montserrat
Roig, Ignasi
author_facet Martínez-Marchal, Ana
Huang, Yan
Guillot-Ferriols, Maria Teresa
Ferrer-Roda, Mònica
Guixé, Anna
Garcia-Caldés, Montserrat
Roig, Ignasi
author_sort Martínez-Marchal, Ana
collection PubMed
description Mammalian oogonia proliferate without completing cytokinesis, forming cysts. Within these, oocytes differentiate and initiate meiosis, promoting double-strand break (DSBs) formation, which are repaired by homologous recombination (HR) causing the pairing and synapsis of the homologs. Errors in these processes activate checkpoint mechanisms, leading to apoptosis. At the end of prophase I, in contrast with what is observed in spermatocytes, oocytes accumulate unrepaired DSBs. Simultaneously to the cyst breakdown, there is a massive oocyte death, which has been proposed to be necessary to enable the individualization of the oocytes to form follicles. Based upon all the above-mentioned information, we hypothesize that the apparently inefficient HR occurring in the oocytes may be a requirement to first eliminate most of the oocytes and enable cyst breakdown and follicle formation. To test this idea, we compared perinatal ovaries from control and mutant mice for the effector kinase of the DNA Damage Response (DDR), CHK2. We found that CHK2 is required to eliminate ~50% of the fetal oocyte population. Nevertheless, the number of oocytes and follicles found in Chk2-mutant ovaries three days after birth was equivalent to that of the controls. These data revealed the existence of another mechanism capable of eliminating oocytes. In vitro inhibition of CHK1 rescued the oocyte number in Chk2(-/-) mice, implying that CHK1 regulates postnatal oocyte death. Moreover, we found that CHK1 and CHK2 functions are required for the timely breakdown of the cyst and to form follicles. Thus, we uncovered a novel CHK1 function in regulating the oocyte population in mice. Based upon these data, we propose that the CHK1- and CHK2-dependent DDR controls the number of oocytes and is required to properly break down oocyte cysts and form follicles in mammals.
format Online
Article
Text
id pubmed-7710113
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-77101132020-12-03 The DNA damage response is required for oocyte cyst breakdown and follicle formation in mice Martínez-Marchal, Ana Huang, Yan Guillot-Ferriols, Maria Teresa Ferrer-Roda, Mònica Guixé, Anna Garcia-Caldés, Montserrat Roig, Ignasi PLoS Genet Research Article Mammalian oogonia proliferate without completing cytokinesis, forming cysts. Within these, oocytes differentiate and initiate meiosis, promoting double-strand break (DSBs) formation, which are repaired by homologous recombination (HR) causing the pairing and synapsis of the homologs. Errors in these processes activate checkpoint mechanisms, leading to apoptosis. At the end of prophase I, in contrast with what is observed in spermatocytes, oocytes accumulate unrepaired DSBs. Simultaneously to the cyst breakdown, there is a massive oocyte death, which has been proposed to be necessary to enable the individualization of the oocytes to form follicles. Based upon all the above-mentioned information, we hypothesize that the apparently inefficient HR occurring in the oocytes may be a requirement to first eliminate most of the oocytes and enable cyst breakdown and follicle formation. To test this idea, we compared perinatal ovaries from control and mutant mice for the effector kinase of the DNA Damage Response (DDR), CHK2. We found that CHK2 is required to eliminate ~50% of the fetal oocyte population. Nevertheless, the number of oocytes and follicles found in Chk2-mutant ovaries three days after birth was equivalent to that of the controls. These data revealed the existence of another mechanism capable of eliminating oocytes. In vitro inhibition of CHK1 rescued the oocyte number in Chk2(-/-) mice, implying that CHK1 regulates postnatal oocyte death. Moreover, we found that CHK1 and CHK2 functions are required for the timely breakdown of the cyst and to form follicles. Thus, we uncovered a novel CHK1 function in regulating the oocyte population in mice. Based upon these data, we propose that the CHK1- and CHK2-dependent DDR controls the number of oocytes and is required to properly break down oocyte cysts and form follicles in mammals. Public Library of Science 2020-11-18 /pmc/articles/PMC7710113/ /pubmed/33206637 http://dx.doi.org/10.1371/journal.pgen.1009067 Text en © 2020 Martínez-Marchal et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Martínez-Marchal, Ana
Huang, Yan
Guillot-Ferriols, Maria Teresa
Ferrer-Roda, Mònica
Guixé, Anna
Garcia-Caldés, Montserrat
Roig, Ignasi
The DNA damage response is required for oocyte cyst breakdown and follicle formation in mice
title The DNA damage response is required for oocyte cyst breakdown and follicle formation in mice
title_full The DNA damage response is required for oocyte cyst breakdown and follicle formation in mice
title_fullStr The DNA damage response is required for oocyte cyst breakdown and follicle formation in mice
title_full_unstemmed The DNA damage response is required for oocyte cyst breakdown and follicle formation in mice
title_short The DNA damage response is required for oocyte cyst breakdown and follicle formation in mice
title_sort dna damage response is required for oocyte cyst breakdown and follicle formation in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7710113/
https://www.ncbi.nlm.nih.gov/pubmed/33206637
http://dx.doi.org/10.1371/journal.pgen.1009067
work_keys_str_mv AT martinezmarchalana thednadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice
AT huangyan thednadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice
AT guillotferriolsmariateresa thednadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice
AT ferrerrodamonica thednadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice
AT guixeanna thednadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice
AT garciacaldesmontserrat thednadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice
AT roigignasi thednadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice
AT martinezmarchalana dnadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice
AT huangyan dnadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice
AT guillotferriolsmariateresa dnadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice
AT ferrerrodamonica dnadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice
AT guixeanna dnadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice
AT garciacaldesmontserrat dnadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice
AT roigignasi dnadamageresponseisrequiredforoocytecystbreakdownandfollicleformationinmice