AI Article Synopsis

  • Scientists studied how a special protein called Pou5f3 helps cells in zebrafish embryos develop into different types of cells.
  • They used cool imaging techniques to see how Pou5f3 works with another protein called Nanog to help form important tissues during the early stages of growth.
  • They found that other proteins like Sox32 help control where Pou5f3 and Nanog work together, which affects how cells are formed in different parts of the developing fish.

Article Abstract

Formation of the three embryonic germ layers is a fundamental developmental process that initiates differentiation. How the zebrafish pluripotency factor Pou5f3 (homologous to mammalian Oct4) drives lineage commitment is unclear. Here, we introduce fluorescence lifetime imaging microscopy and fluorescence correlation spectroscopy to assess the formation of Pou5f3 complexes with other transcription factors in real-time in gastrulating zebrafish embryos. We show, at single-cell resolution in vivo, that Pou5f3 complexes with Nanog to pattern mesendoderm differentiation at the blastula stage. Later, during gastrulation, Sox32 restricts Pou5f3-Nanog complexes to the ventrolateral mesendoderm by binding Pou5f3 or Nanog in prospective dorsal endoderm. In the ventrolateral endoderm, the Elabela / Aplnr pathway limits Sox32 levels, allowing the formation of Pou5f3-Nanog complexes and the activation of downstream BMP signaling. This quantitative model shows that a balance in the spatiotemporal distribution of Pou5f3-Nanog complexes, modulated by Sox32, regulates mesendoderm specification along the dorsoventral axis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5042653PMC
http://dx.doi.org/10.7554/eLife.11475DOI Listing

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Article Synopsis
  • Scientists studied how a special protein called Pou5f3 helps cells in zebrafish embryos develop into different types of cells.
  • They used cool imaging techniques to see how Pou5f3 works with another protein called Nanog to help form important tissues during the early stages of growth.
  • They found that other proteins like Sox32 help control where Pou5f3 and Nanog work together, which affects how cells are formed in different parts of the developing fish.
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