Essential requirement of mammalian Pumilio family in embryonic development

Kaibo Lin1,2, Shikun Zhang1, Qinghua Shi1

  • 1State Key Laboratory of Reproductive Medicine, Nanjing Medical University, Nanjing 211166, China.

Insights

Mouse PUMILIO1 and PUMILIO2 proteins are essential for early embryonic development and stem cell maintenance. Loss of these RNA-binding proteins causes gastrulation failure, highlighting their conserved role in posttranscriptional regulation.

Area of Science:

  • Developmental Biology
  • Molecular Biology
  • Stem Cell Biology

Background:

  • Pumilio/FBF (PUF) proteins are conserved RNA-binding proteins critical in invertebrates.
  • Roles of mammalian PUMILIO1 (PUM1) and PUMILIO2 (PUM2) in embryonic development were largely unknown.

Purpose of the Study:

  • Investigate the function of PUM1 and PUM2 in mouse embryonic development and stem cell maintenance.
  • Determine if PUM proteins act as posttranscriptional regulators in mammals.

Main Methods:

  • Generation of Pum1 and Pum2 double knockout mice.
  • Establishment and characterization of embryonic stem cells (ESCs) from mutant embryos.
  • Analysis of gene expression (Gata6, Lama1) and protein-RNA interactions (PUM1 immunoprecipitation).

Main Results:

  • Loss of PUM1 and PUM2 caused gastrulation failure and embryonic lethality at E8.5.
  • Mutant ESCs and embryos showed reduced growth and increased endoderm marker expression (Gata6, Lama1).
  • PUM1 directly binds Gata6 transcripts, regulating its expression posttranscriptionally.

Conclusions:

  • Mouse PUM proteins are essential for embryonic development, similar to invertebrate homologues.
  • PUM proteins are conserved posttranscriptional regulators critical for mammalian stem cell development and cell lineage determination.
  • Defects in growth and differentiation due to dysregulated Gata6 expression likely cause gastrulation failure.

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