The BCL-2 pathway preserves mammalian genome integrity by eliminating recombination-defective oocytes

If left unrepaired, meiotic DSBs are toxic to mammalian cells, thus oocytes in which DSBs persist are eliminated by the DNA-damage checkpoint. Here the authors provide insights into the roles of PUMA, NOXA and BAX during DNA damage checkpoint that eliminates Dmc1 −/− and Msh5 −/− oocytes.

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Autores principales: Elias ElInati, Agata P. Zielinska, Afshan McCarthy, Nada Kubikova, Valdone Maciulyte, Shantha Mahadevaiah, Mahesh N. Sangrithi, Obah Ojarikre, Dagan Wells, Kathy K. Niakan, Melina Schuh, James M. A. Turner
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/c2bf829fec2b403580972f4e566da03c
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spelling oai:doaj.org-article:c2bf829fec2b403580972f4e566da03c2021-12-02T14:47:36ZThe BCL-2 pathway preserves mammalian genome integrity by eliminating recombination-defective oocytes10.1038/s41467-020-16441-z2041-1723https://doaj.org/article/c2bf829fec2b403580972f4e566da03c2020-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16441-zhttps://doaj.org/toc/2041-1723If left unrepaired, meiotic DSBs are toxic to mammalian cells, thus oocytes in which DSBs persist are eliminated by the DNA-damage checkpoint. Here the authors provide insights into the roles of PUMA, NOXA and BAX during DNA damage checkpoint that eliminates Dmc1 −/− and Msh5 −/− oocytes.Elias ElInatiAgata P. ZielinskaAfshan McCarthyNada KubikovaValdone MaciulyteShantha MahadevaiahMahesh N. SangrithiObah OjarikreDagan WellsKathy K. NiakanMelina SchuhJames M. A. TurnerNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Elias ElInati
Agata P. Zielinska
Afshan McCarthy
Nada Kubikova
Valdone Maciulyte
Shantha Mahadevaiah
Mahesh N. Sangrithi
Obah Ojarikre
Dagan Wells
Kathy K. Niakan
Melina Schuh
James M. A. Turner
The BCL-2 pathway preserves mammalian genome integrity by eliminating recombination-defective oocytes
description If left unrepaired, meiotic DSBs are toxic to mammalian cells, thus oocytes in which DSBs persist are eliminated by the DNA-damage checkpoint. Here the authors provide insights into the roles of PUMA, NOXA and BAX during DNA damage checkpoint that eliminates Dmc1 −/− and Msh5 −/− oocytes.
format article
author Elias ElInati
Agata P. Zielinska
Afshan McCarthy
Nada Kubikova
Valdone Maciulyte
Shantha Mahadevaiah
Mahesh N. Sangrithi
Obah Ojarikre
Dagan Wells
Kathy K. Niakan
Melina Schuh
James M. A. Turner
author_facet Elias ElInati
Agata P. Zielinska
Afshan McCarthy
Nada Kubikova
Valdone Maciulyte
Shantha Mahadevaiah
Mahesh N. Sangrithi
Obah Ojarikre
Dagan Wells
Kathy K. Niakan
Melina Schuh
James M. A. Turner
author_sort Elias ElInati
title The BCL-2 pathway preserves mammalian genome integrity by eliminating recombination-defective oocytes
title_short The BCL-2 pathway preserves mammalian genome integrity by eliminating recombination-defective oocytes
title_full The BCL-2 pathway preserves mammalian genome integrity by eliminating recombination-defective oocytes
title_fullStr The BCL-2 pathway preserves mammalian genome integrity by eliminating recombination-defective oocytes
title_full_unstemmed The BCL-2 pathway preserves mammalian genome integrity by eliminating recombination-defective oocytes
title_sort bcl-2 pathway preserves mammalian genome integrity by eliminating recombination-defective oocytes
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/c2bf829fec2b403580972f4e566da03c
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