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PMID: 39171364 Published · ppublish English

The role of TEAD4 in trophectoderm commitment and development is not conserved in non-rodent mammals.

Development (Cambridge, England) ·Vol. 151 ·No. 20 ·2024-10-15

Pérez-Gómez A, González-Brusi L, Flores-Borobia I, Galiano-Cogolludo B, Lamas-Toranzo I, Hamze JG, Toledano-Díaz A, Santiago-Moreno J, Ramos-Ibeas P, Bermejo-Álvarez P

Abstract

The first lineage differentiation in mammals gives rise to the inner cell mass and the trophectoderm (TE). In mice, TEAD4 is a master regulator of TE commitment, as it regulates the expression of other TE-specific genes and its ablation prevents blastocyst formation, but its role in other mammals remains unclear. Herein, we have observed that TEAD4 ablation in two phylogenetically distant species (bovine and rabbit) does not impede TE differentiation, blastocyst formation and the expression of TE markers, such as GATA3 and CDX2, although a reduced number of cells in the inner cell mass was observed in bovine TEAD4 knockout (KO) blastocysts. Transcriptional analysis in bovine blastocysts revealed no major transcriptional effect of the ablation, although the expression of hypoblast and Hippo signalling-related genes tended to be decreased in KO embryos. Experiments were conducted in the bovine model to determine whether TEAD4 was required for post-hatching development. TEAD4 KO spherical conceptuses showed normal development of the embryonic disc and TE, but hypoblast migration rate was reduced. At later stages of development (tubular conceptuses), no differences were observed between KO and wild-type conceptuses.

Keywords
Bovine Human Rabbit TEAD4 KO Trophectoderm
MeSH 主题词
Animals Cattle Female Mice Rabbits Blastocyst/metabolism,cytology CDX2 Transcription Factor/metabolism,genetics Cell Differentiation DNA-Binding Proteins/metabolism,genetics Ectoderm/metabolism,embryology,cytology Embryo, Mammalian/metabolism Embryonic Development GATA3 Transcription Factor/metabolism,genetics Gene Expression Regulation, Developmental Hippo Signaling Pathway TEA Domain Transcription Factors/metabolism Transcription Factors/metabolism,genetics Trophoblasts/metabolism,cytology
Article Info
Journal
Development (Cambridge, England)
Abbr.
Development
ISSN
1477-9129
Published
2024-10-15
Language
English
Country/Region
England
NLM ID
8701744
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