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1.
Nat Commun ; 13(1): 788, 2022 02 10.
Artículo en Inglés | MEDLINE | ID: mdl-35145080

RESUMEN

Awakening of zygotic transcription in animal embryos relies on maternal pioneer transcription factors. The interplay of global and specific functions of these proteins remains poorly understood. Here, we analyze chromatin accessibility and time-resolved transcription in single and double mutant zebrafish embryos lacking pluripotency factors Pou5f3 and Sox19b. We show that two factors modify chromatin in a largely independent manner. We distinguish four types of direct enhancers by differential requirements for Pou5f3 or Sox19b. We demonstrate that changes in chromatin accessibility of enhancers underlie the changes in zygotic expression repertoire in the double mutants. Pou5f3 or Sox19b promote chromatin accessibility of enhancers linked to the genes involved in gastrulation and ventral fate specification. The genes regulating mesendodermal and dorsal fates are primed for activation independently of Pou5f3 and Sox19b. Strikingly, simultaneous loss of Pou5f3 and Sox19b leads to premature expression of genes, involved in regulation of organogenesis and differentiation.


Asunto(s)
Regulación del Desarrollo de la Expresión Génica , Genoma , Proteínas de Pez Cebra/genética , Proteínas de Pez Cebra/metabolismo , Pez Cebra/genética , Cigoto/metabolismo , Animales , Diferenciación Celular , Cromatina/metabolismo , Femenino , Gastrulación , Masculino , Factor 3 de Transcripción de Unión a Octámeros/genética , Factores de Transcripción SOX/genética , Factores de Transcripción/metabolismo , Pez Cebra/crecimiento & desarrollo , Pez Cebra/metabolismo , Cigoto/crecimiento & desarrollo
2.
Development ; 145(1)2018 01 09.
Artículo en Inglés | MEDLINE | ID: mdl-29180568

RESUMEN

Nanog has been implicated in establishment of pluripotency in mammals and in zygotic genome activation in zebrafish. In this study, we characterize the development of MZnanog (maternal and zygotic null) mutant zebrafish embryos. Without functional Nanog, epiboly is severely affected, embryo axes do not form and massive cell death starts at the end of gastrulation. We show that three independent defects in MZnanog mutants contribute to epiboly failure: yolk microtubule organization required for epiboly is abnormal, maternal mRNA fails to degrade owing to the absence of miR-430, and actin structure of the yolk syncytial layer does not form properly. We further demonstrate that the cell death in MZnanog embryos is cell-autonomous. Nanog is necessary for correct spatial expression of the ventral-specifying genes bmp2b, vox and vent, and the neural transcription factor her3 It is also required for the correctly timed activation of endoderm genes and for the degradation of maternal eomesa mRNA via miR-430. Our findings suggest that maternal Nanog coordinates several gene regulatory networks that shape the embryo during gastrulation.


Asunto(s)
Gástrula/embriología , Gastrulación/fisiología , Proteína Homeótica Nanog/metabolismo , Proteínas de Pez Cebra/metabolismo , Pez Cebra/embriología , Animales , Proteína Morfogenética Ósea 2/genética , Proteína Morfogenética Ósea 2/metabolismo , Supervivencia Celular/fisiología , Gástrula/citología , Proteínas de Homeodominio/genética , Proteínas de Homeodominio/metabolismo , MicroARNs/genética , MicroARNs/metabolismo , Mutación , Proteína Homeótica Nanog/genética , Proteínas Represoras/genética , Proteínas Represoras/metabolismo , Saco Vitelino/embriología , Pez Cebra/genética , Proteínas de Pez Cebra/genética
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