4.7 Article

A membrane-associated β-catenin/Oct4 complex correlates with ground-state pluripotency in mouse embryonic stem cells

期刊

DEVELOPMENT
卷 140, 期 6, 页码 1171-1183

出版社

COMPANY OF BIOLOGISTS LTD
DOI: 10.1242/dev.085654

关键词

Oct4; Wnt signaling; Mouse embryonic stem cells; Pluripotency; beta-Catenin

资金

  1. Wellcome Trust
  2. European Research Council
  3. Human Frontier Science Program
  4. Herchel Smith postdoctoral fellowship
  5. Postdoctoral fellowship Beca Chile [74100037]
  6. New York State Stem Cell Medicine (NYSTEM) Post-doctoral training fellowship
  7. Biotechnology and Biological Sciences Research Council (BBSRC) [BB/D526088/1]
  8. National Institutes of Health [1R21HD057525-01]
  9. NYSTEM
  10. BBSRC [BB/D526088/1] Funding Source: UKRI

向作者/读者索取更多资源

The maintenance of pluripotency in mouse embryonic stem cells (mESCs) relies on the activity of a transcriptional network that is fuelled by the activity of three transcription factors (Nanog, Oct4 and Sox2) and balanced by the repressive activity of Tcf3. Extracellular signals modulate the activity of the network and regulate the differentiation capacity of the cells. Wnt/beta-catenin signaling has emerged as a significant potentiator of pluripotency: increases in the levels of beta-catenin regulate the activity of Oct4 and Nanog, and enhance pluripotency. A recent report shows that beta-catenin achieves some of these effects by modulating the activity of Tcf3, and that this effect does not require its transcriptional activation domain. Here, we show that during self-renewal there is negligible transcriptional activity of beta-catenin and that this is due to its tight association with membranes, where we find it in a complex with Oct4 and E-cadherin. Differentiation triggers a burst of Wnt/beta-catenin transcriptional activity that coincides with the disassembly of the complex. Our results establish that beta-catenin, but not its transcriptional activity, is central to pluripotency acting through a beta-catenin/Oct4 complex.

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