Differential requirement for Dab2 in the development of embryonic and extra-embryonic tissues

Robert Moore, Kathy Qi Cai, Wensi Tao

  • 1Department of Cell Biology, University of Miami Miller School of Medicine, Miami, 33136, FL, USA. xxu2@med.miami.edu.

BMC Developmental Biology
|October 31, 2013
PubMed
Abstract

Insights

Disabled-2 (Dab2) protein is crucial for extraembryonic endoderm development and epithelial organization. While dispensable for organogenesis, Dab2 plays a physiological role in lipoprotein endocytosis and cholesterol metabolism.

Area of Science:

  • Cell Biology
  • Developmental Biology
  • Molecular Biology

Background:

  • Disabled-2 (Dab2) is an endocytic adaptor protein regulating clathrin-mediated endocytosis and cargo trafficking.
  • Loss of Dab2 expression in cancers suggests a tumor suppressor role.
  • In vitro studies show Dab2 establishes epithelial polarity and modulates signaling pathways via receptor endocytosis.

Purpose of the Study:

  • To clarify the in vivo roles of Dab2 in development and physiology.
  • To investigate Dab2 function using a newly designed floxed allele for gene deletion.

Main Methods:

  • Generation of a new floxed allele to delete the dab2 gene.
  • Analysis of constitutive dab2 deletion embryos at E5.5 and E9.5.
  • Conditional deletion of dab2 using Meox2-Cre and Sox2-Cre drivers.
  • Assessment of adult Dab2-deficient mice for physiological changes.

Main Results:

  • Constitutive dab2 deletion led to endoderm disorganization and embryonic lethality by E9.5.
  • Conditional deletion in the embryo proper with retention in extraembryonic tissues resulted in grossly normal mice.
  • Adult Dab2-deficient mice exhibited a significant increase in serum cholesterol levels.

Conclusions:

  • Dab2 is essential for extraembryonic endoderm development and epithelial organization.
  • Other endocytic adaptors may partially compensate for Dab2 loss.
  • Dab2 is dispensable for embryonic organ development but plays a physiological role in lipoprotein endocytosis and cholesterol metabolism.

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