Roles of brca2 (fancd1) in oocyte nuclear architecture, gametogenesis, gonad tumors, and genome stability in zebrafish.

Mild mutations in BRCA2 (FANCD1) cause Fanconi anemia (FA) when homozygous, while severe mutations cause common cancers including breast, ovarian, and prostate cancers when heterozygous. Here we report a zebrafish brca2 insertional mutant that shares phenotypes with human patients and identifies a n...

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Main Authors: Adriana Rodríguez-Marí, Catherine Wilson, Tom A Titus, Cristian Cañestro, Ruth A BreMiller, Yi-Lin Yan, Indrajit Nanda, Adam Johnston, John P Kanki, Erin M Gray, Xinjun He, Jan Spitsbergen, Detlev Schindler, John H Postlethwait
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-03-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC3069109?pdf=render
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spelling doaj-7fa896b1ac894ef09583b26f729d23352020-11-25T02:23:50ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042011-03-0173e100135710.1371/journal.pgen.1001357Roles of brca2 (fancd1) in oocyte nuclear architecture, gametogenesis, gonad tumors, and genome stability in zebrafish.Adriana Rodríguez-MaríCatherine WilsonTom A TitusCristian CañestroRuth A BreMillerYi-Lin YanIndrajit NandaAdam JohnstonJohn P KankiErin M GrayXinjun HeJan SpitsbergenDetlev SchindlerJohn H PostlethwaitMild mutations in BRCA2 (FANCD1) cause Fanconi anemia (FA) when homozygous, while severe mutations cause common cancers including breast, ovarian, and prostate cancers when heterozygous. Here we report a zebrafish brca2 insertional mutant that shares phenotypes with human patients and identifies a novel brca2 function in oogenesis. Experiments showed that mutant embryos and mutant cells in culture experienced genome instability, as do cells in FA patients. In wild-type zebrafish, meiotic cells expressed brca2; and, unexpectedly, transcripts in oocytes localized asymmetrically to the animal pole. In juvenile brca2 mutants, oocytes failed to progress through meiosis, leading to female-to-male sex reversal. Adult mutants became sterile males due to the meiotic arrest of spermatocytes, which then died by apoptosis, followed by neoplastic proliferation of gonad somatic cells that was similar to neoplasia observed in ageing dead end (dnd)-knockdown males, which lack germ cells. The construction of animals doubly mutant for brca2 and the apoptotic gene tp53 (p53) rescued brca2-dependent sex reversal. Double mutants developed oocytes and became sterile females that produced only aberrant embryos and showed elevated risk for invasive ovarian tumors. Oocytes in double-mutant females showed normal localization of brca2 and pou5f1 transcripts to the animal pole and vasa transcripts to the vegetal pole, but had a polarized rather than symmetrical nucleus with the distribution of nucleoli and chromosomes to opposite nuclear poles; this result revealed a novel role for Brca2 in establishing or maintaining oocyte nuclear architecture. Mutating tp53 did not rescue the infertility phenotype in brca2 mutant males, suggesting that brca2 plays an essential role in zebrafish spermatogenesis. Overall, this work verified zebrafish as a model for the role of Brca2 in human disease and uncovered a novel function of Brca2 in vertebrate oocyte nuclear architecture.http://europepmc.org/articles/PMC3069109?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Adriana Rodríguez-Marí
Catherine Wilson
Tom A Titus
Cristian Cañestro
Ruth A BreMiller
Yi-Lin Yan
Indrajit Nanda
Adam Johnston
John P Kanki
Erin M Gray
Xinjun He
Jan Spitsbergen
Detlev Schindler
John H Postlethwait
spellingShingle Adriana Rodríguez-Marí
Catherine Wilson
Tom A Titus
Cristian Cañestro
Ruth A BreMiller
Yi-Lin Yan
Indrajit Nanda
Adam Johnston
John P Kanki
Erin M Gray
Xinjun He
Jan Spitsbergen
Detlev Schindler
John H Postlethwait
Roles of brca2 (fancd1) in oocyte nuclear architecture, gametogenesis, gonad tumors, and genome stability in zebrafish.
PLoS Genetics
author_facet Adriana Rodríguez-Marí
Catherine Wilson
Tom A Titus
Cristian Cañestro
Ruth A BreMiller
Yi-Lin Yan
Indrajit Nanda
Adam Johnston
John P Kanki
Erin M Gray
Xinjun He
Jan Spitsbergen
Detlev Schindler
John H Postlethwait
author_sort Adriana Rodríguez-Marí
title Roles of brca2 (fancd1) in oocyte nuclear architecture, gametogenesis, gonad tumors, and genome stability in zebrafish.
title_short Roles of brca2 (fancd1) in oocyte nuclear architecture, gametogenesis, gonad tumors, and genome stability in zebrafish.
title_full Roles of brca2 (fancd1) in oocyte nuclear architecture, gametogenesis, gonad tumors, and genome stability in zebrafish.
title_fullStr Roles of brca2 (fancd1) in oocyte nuclear architecture, gametogenesis, gonad tumors, and genome stability in zebrafish.
title_full_unstemmed Roles of brca2 (fancd1) in oocyte nuclear architecture, gametogenesis, gonad tumors, and genome stability in zebrafish.
title_sort roles of brca2 (fancd1) in oocyte nuclear architecture, gametogenesis, gonad tumors, and genome stability in zebrafish.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2011-03-01
description Mild mutations in BRCA2 (FANCD1) cause Fanconi anemia (FA) when homozygous, while severe mutations cause common cancers including breast, ovarian, and prostate cancers when heterozygous. Here we report a zebrafish brca2 insertional mutant that shares phenotypes with human patients and identifies a novel brca2 function in oogenesis. Experiments showed that mutant embryos and mutant cells in culture experienced genome instability, as do cells in FA patients. In wild-type zebrafish, meiotic cells expressed brca2; and, unexpectedly, transcripts in oocytes localized asymmetrically to the animal pole. In juvenile brca2 mutants, oocytes failed to progress through meiosis, leading to female-to-male sex reversal. Adult mutants became sterile males due to the meiotic arrest of spermatocytes, which then died by apoptosis, followed by neoplastic proliferation of gonad somatic cells that was similar to neoplasia observed in ageing dead end (dnd)-knockdown males, which lack germ cells. The construction of animals doubly mutant for brca2 and the apoptotic gene tp53 (p53) rescued brca2-dependent sex reversal. Double mutants developed oocytes and became sterile females that produced only aberrant embryos and showed elevated risk for invasive ovarian tumors. Oocytes in double-mutant females showed normal localization of brca2 and pou5f1 transcripts to the animal pole and vasa transcripts to the vegetal pole, but had a polarized rather than symmetrical nucleus with the distribution of nucleoli and chromosomes to opposite nuclear poles; this result revealed a novel role for Brca2 in establishing or maintaining oocyte nuclear architecture. Mutating tp53 did not rescue the infertility phenotype in brca2 mutant males, suggesting that brca2 plays an essential role in zebrafish spermatogenesis. Overall, this work verified zebrafish as a model for the role of Brca2 in human disease and uncovered a novel function of Brca2 in vertebrate oocyte nuclear architecture.
url http://europepmc.org/articles/PMC3069109?pdf=render
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