p53 Controls Meiotic Prophase Progression and Crossover Formation

Meiosis initiates with the formation of double strand breaks (DSBs) throughout the genome. To avoid genomic instability, these DSBs need to be correctly repaired by homologous recombination. Surveillance mechanisms involving the DNA damage response (DDR) pathway ATM-CHK2-p53 can detect the persisten...

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Detalles Bibliográficos
Autores: Marcet-Ortega, Marina|||0000-0002-5756-1373, Maldonado Linares, Andros|||0000-0001-8322-8390, López Panadés, Maria|||0000-0003-2581-7079, Roig, Ignasi|||0000-0003-0313-3581
Tipo de recurso: artículo
Fecha de publicación:2022
País:España
Institución:Universitat Autònoma de Barcelona
Repositorio:Dipòsit Digital de Documents de la UAB
Idioma:inglés
OAI Identifier:oai:ddd.uab.cat:265659
Acceso en línea:https://ddd.uab.cat/record/265659
https://dx.doi.org/urn:doi:10.3390/ijms23179818
Access Level:acceso abierto
Palabra clave:P53
Meiosis
Synaptonemal complex
DSB repair
γH2AX
Crossover
MLH1
Descripción
Sumario:Meiosis initiates with the formation of double strand breaks (DSBs) throughout the genome. To avoid genomic instability, these DSBs need to be correctly repaired by homologous recombination. Surveillance mechanisms involving the DNA damage response (DDR) pathway ATM-CHK2-p53 can detect the persistence of unrepaired DBSs and activate the recombination-dependent arrest at the pachytene stage. However, a complete understanding of p53 functions under normal physiological conditions remains lacking. Here, we report a detailed analysis of the p53 role during meiotic prophase in mice spermatocytes. We show that the absence of p53 regulates prophase progression by slowing down the pachytene stage when the recombination-dependent arrest occurs. Furthermore, our results show that p53 is necessary for proper crossover (CO) formation and localization. Our study contributes to a deeper understanding of p53 roles during the meiotic prophase.