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January 24, 2026Journal of Cellular Physiology0 citations

Endoglin Regulates Pluripotency and Differentiation in Human Embryonic Stem Cells Through Wnt and TGF‐β Signaling Crosstalk

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MKMin‐Tae KimMKMinje KangSJSuji Jeong

Key Points

  • To investigate the role of endoglin in regulating pluripotency and differentiation in human embryonic stem cells.
  • Generated endoglin knockout human pluripotent stem cells (ENG ‐/‐)
  • Examined core pluripotency markers
  • Analyzed differentiation potential into mesoderm, ectoderm, and endoderm lineages
  • Inhibited TGF‐β signaling and WNT secretion using pharmacological agents
  • ENG knockout cells maintain core pluripotency markers but show spontaneous differentiation.
  • These cells have reduced potential to form mesoderm, ectoderm, and endoderm lineages.
  • Aberrant WNT activation is observed in ENG ‐/‐ cells, correlating with abnormal differentiated cell formation.
  • Blocking WNT signaling with IWP2 reduces peripheral differentiation and aids in restoring differentiation potential.

Abstract

ABSTRACT Although endoglin (ENG) is traditionally recognized as a coreceptor in TGF‐β signaling, its role in human pluripotent stem cells (hPSCs) remains unexplored. Here, we report that ENG knockout (ENG ‐/‐ ) hPSCs maintain core pluripotency markers yet undergo spontaneous differentiation and exhibit markedly reduced potential to form mesoderm, ectoderm, and endoderm lineages. Contrary to expectations, pharmacological inhibition of TGF‐β signaling failed to replicate or rescue this phenotype, implicating pathways beyond TGF‐β in governing the ENG ‐/‐ phenotype. Instead, we observed aberrant WNT activation in ENG ‐/‐ cells, which correlated with the emergence of peripherally localized differentiated cells and compromised multilineage commitment. Notably, blocking WNT secretion with IWP2 suppressed spontaneous peripheral differentiated cell formation and partially restored ectodermal and endodermal differentiation. These findings establish a novel regulatory role for ENG in balancing WNT signaling, to preserve hPSCs' developmental potential, thereby illuminating an unrecognized mechanism of stem cell fate control and revealing ENG as a critical mediator of hPSCs' self‐renewal and lineage fidelity.

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Cite This Study

Kim et al. (2026) studied this question.

synapsesocial.com/papers/697460cebb9d90c67120aaa1https://doi.org/10.1002/jcp.70135
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