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Science ; 384(6700): 1105-1110, 2024 Jun 07.
Artigo em Inglês | MEDLINE | ID: mdl-38843334

RESUMO

Axis formation in fish and amphibians typically begins with a prepattern of maternal gene products. Annual killifish embryogenesis, however, challenges prepatterning models as blastomeres disperse and then aggregate to form the germ layers and body axes. We show that huluwa, a prepatterning factor thought to break symmetry by stabilizing ß-catenin, is truncated and inactive in Nothobranchius furzeri. Nuclear ß-catenin is not selectively stabilized on one side of the blastula but accumulates in cells forming the aggregate. Blocking ß-catenin activity or Nodal signaling disrupts aggregate formation and germ layer specification. Nodal signaling coordinates cell migration, establishing an early role for this signaling pathway. These results reveal a surprising departure from established mechanisms of axis formation: Huluwa-mediated prepatterning is dispensable, and ß-catenin and Nodal regulate morphogenesis.


Assuntos
Fundulidae , Morfogênese , Proteína Nodal , beta Catenina , Animais , beta Catenina/metabolismo , Blástula/metabolismo , Padronização Corporal , Movimento Celular , Núcleo Celular/metabolismo , Fundulidae/embriologia , Fundulidae/metabolismo , Camadas Germinativas/metabolismo , Proteína Nodal/metabolismo , Transdução de Sinais
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