Suppression of ERK signalling promotes pluripotent epiblast in the human blastocyst

Early
Published

July 28, 2025

Abstract
Studies in the mouse demonstrate the importance of fibroblast growth factor (FGF) and extra-cellular receptor tyrosine kinase (ERK) in specification of embryo-fated epiblast and yolk-sac-fated hypoblast cells from uncommitted inner cell mass (ICM) cells prior to implantation. Molecular mechanisms regulating specification of early lineages in human development are comparatively unclear. Here we show that exogenous FGF stimulation leads to expanded hypoblast molecular marker expression, at the expense of the epiblast. Conversely, we show that specifically inhibiting ERK activity leads to expansion of epiblast cells functionally capable of giving rise to naïve human pluripotent stem cells. Single-cell transcriptomic analysis indicates that these epiblast cells downregulate FGF signalling and maintain molecular markers of the epiblast. Our functional study demonstrates the molecular mechanisms governing ICM specification in human development, whereby segregation of the epiblast and hypoblast lineages occurs during maturation of the mammalian embryo in an ERK signal-dependent manner.

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DOI:10.1038/s41467-025-61830-x

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Suppression of ERK signalling promotes pluripotent epiblast in the human blastocyst

SWHID:swh:1:dir:f193b7d168bf727dee933ac636887eed2a6b6644

Datasets

Suppression of ERK signalling promotes pluripotent epiblast in the human blastocyst

GEO:GSE250614

Suppression of ERK signalling promotes pluripotent epiblast in the human blastocyst

GEO:GSE297052

Suppression of ERK signalling promotes pluripotent epiblast in the human blastocyst [mouse_ERKi_scRNAseq]

GEO:GSE297478

Suppression of ERK signalling promotes pluripotent epiblast in the human blastocyst [RNA-seq I]

GEO:GSE239843

Suppression of ERK signalling promotes pluripotent epiblast in the human blastocyst [RNA-seq II]

GEO:GSE250613

PBAT sequencing of human embryonic stem cells

EGA:EGAD50000001475

Suppression of ERK signalling promotes pluripotent epiblast in the human blastocyst

DOI:10.6084/m9.figshare.28597145

Suppression of ERK signalling promotes pluripotent epiblast in the human blastocyst

DOI:10.5281/zenodo.15128175

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