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Zebrafish ambra1b knockout reveals a novel role for Ambra1 in primordial germ cells survival, sex differentiation and reproduction
Fontana, Camilla Maria; Terrin, Francesca; Facchinello, Nicola; Meneghetti, Giacomo; Dinarello, Alberto; Gambarotto, Lisa; Zuccarotto, Annalisa; Caichiolo, Micol; Brocca, Ginevra; Verin, Ranieri; Nazio, Francesca; Carnevali, Oliana; Cecconi, Francesco; Bonaldo, Paolo; Valle, Luisa Dalla.
Afiliação
  • Fontana, Camilla Maria; University of Padua. Department of Biology. Padua. IT
  • Terrin, Francesca; University of Padua. Department of Biology. Padua. IT
  • Facchinello, Nicola; University of Padua. Department of Molecular Medicine. Padua. IT
  • Meneghetti, Giacomo; University of Padua. Department of Biology. Padua. IT
  • Dinarello, Alberto; University of Padua. Department of Biology. Padua. IT
  • Gambarotto, Lisa; University of Padua. Department of Molecular Medicine. Padua. IT
  • Zuccarotto, Annalisa; University of Padua. Department of Biology. Padua. IT
  • Caichiolo, Micol; University of Padua. Department of Biology. Padua. IT
  • Brocca, Ginevra; University of Padova. Department of Comparative Biomedicine and Food Science (BCA). IT
  • Verin, Ranieri; University of Padova. Department of Comparative Biomedicine and Food Science (BCA). IT
  • Nazio, Francesca; IRCCS Bambino Gesù Children's Hospital. Department of Pediatric Hemato-Oncology and Cell and Gene Therapy. Roma. IT
  • Carnevali, Oliana; Polytechnic University of Marche. Department of Life and Environmental Sciences. IT
  • Cecconi, Francesco; Danish Cancer Society Research Center. Cell Stress and Survival Unit. Copenhagen. DK
  • Bonaldo, Paolo; University of Padua. Department of Molecular Medicine. Padua. IT
  • Valle, Luisa Dalla; University of Padua. Department of Biology. Padua. IT
Biol. Res ; 56: 19-19, 2023. ilus, graf, tab
Artigo em Inglês | LILACS | ID: biblio-1439486
Biblioteca responsável: CL1.1
ABSTRACT

BACKGROUND:

AMBRA1 is an intrinsically disordered protein, working as a scaffold molecule to coordinate, by protein-protein interaction, many cellular processes, including autophagy, mitophagy, apoptosis and cell cycle progression. The zebrafish genome contains two ambra1 paralogous genes (a and b), both involved in development and expressed at high levels in the gonads. Characterization of the zebrafish paralogous genes mutant lines generated by CRISPR/Cas9 approach showed that ambra1b knockout leads to an all-male population.

RESULTS:

We demonstrated that the silencing of the ambra1b gene determines a reduction of primordial germ cells (PGCs), a condition that, in the zebrafish, leads to the development of all-male progeny. PGC reduction was confirmed by knockdown experiments and rescued by injection of ambra1b and human AMBRA1 mRNAs, but not ambra1a mRNA. Moreover, PGC loss was not rescued by injection with human AMBRA1 mRNA mutated in the CUL4-DDB1 binding region, thus suggesting that interaction with this complex is involved in PGC protection from loss. Results from zebrafish embryos injected with murine Stat3 mRNA and stat3 morpholino suggest that Ambra1b could indirectly regulate this protein through CUL4-DDB1 interaction. According to this, Ambra1+/- mice showed a reduced Stat3 expression in the ovary together with a low number of antral follicles and an increase of atretic follicles, indicating a function of Ambra1 in the ovary of mammals as well. Moreover, in agreement with the high expression of these genes in the testis and ovary, we found significant impairment of the reproductive process and pathological alterations, including tumors, mainly limited to the gonads.

CONCLUSIONS:

By exploiting ambra1a and ambra1b knockout zebrafish lines, we prove the sub-functionalization between the two paralogous zebrafish genes and uncover a novel function of Ambra1 in the protection from excessive PGC loss, which seems to require binding with the CUL4-DDB1 complex. Both genes seem to play a role in the regulation of reproductive physiology.
Assuntos


Texto completo: Disponível Coleções: Bases de dados internacionais Base de dados: LILACS Assunto principal: Diferenciação Sexual / Peixe-Zebra Limite: Animais / Feminino / Humanos / Masculino Idioma: Inglês Revista: Biol. Res Assunto da revista: Biologia Ano de publicação: 2023 Tipo de documento: Artigo País de afiliação: Dinamarca / Itália Instituição/País de afiliação: Danish Cancer Society Research Center/DK / IRCCS Bambino Gesù Children's Hospital/IT / Polytechnic University of Marche/IT / University of Padova/IT / University of Padua/IT

Texto completo: Disponível Coleções: Bases de dados internacionais Base de dados: LILACS Assunto principal: Diferenciação Sexual / Peixe-Zebra Limite: Animais / Feminino / Humanos / Masculino Idioma: Inglês Revista: Biol. Res Assunto da revista: Biologia Ano de publicação: 2023 Tipo de documento: Artigo País de afiliação: Dinamarca / Itália Instituição/País de afiliação: Danish Cancer Society Research Center/DK / IRCCS Bambino Gesù Children's Hospital/IT / Polytechnic University of Marche/IT / University of Padova/IT / University of Padua/IT
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