Related Experiment Video
Updated: May 6, 2026

Blastomere Explants to Test for Cell Fate Commitment During Embryonic Development
Published on: January 26, 2013
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.
Background:
Disabled-2 (Dab2) is an endocytic adaptor protein involved in clathrin-mediated endocytosis and cargo trafficking. Since its expression is lost in several cancer types, Dab2 has been suggested to be a tumor suppressor. In vitro studies indicate that Dab2 establishes epithelial cell polarity and organization by directing endocytic trafficking of membrane glycoproteins. Dab2 also modulates cellular signaling pathways by mediating the endocytosis and recycling of surface receptors and associated signaling components. Previously, two independent gene knockout studies have been reported, with some discrepancies in the observed embryonic phenotypes. To further clarify the in vivo roles of Dab2 in development and physiology, we designed a new floxed allele to delete dab2 gene.
Results:
The constitutive dab2 deleted embryos showed a spectrum in the degree of endoderm disorganization in E5.5 and no mutant embryos persisted at E9.5. However, the mice were grossly normal when dab2 deletion was restricted to the embryo proper and the gene was retained in extraembryonic tissues using Meox2-Cre and Sox2-Cre. Adult Dab2-deficient mice had a small but statistically significant increase in serum cholesterol levels.
Conclusion:
The study of the new dab2 mutant allele in embryos and embryoid bodies confirms a role for Dab2 in extraembryonic endoderm development and epithelial organization. Experimental results with embryoid bodies suggest that additional endocytic adaptors such as Arh and Numb could partially compensate for Dab2 loss. Conditional deletion indicates that Dab2 is dispensable for organ development, when the vast majority of the embryonic cells are dab2 null. However, Dab2 has a physiological role in the endocytosis of lipoproteins and cholesterol metabolism.
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.
Related Concept Videos
Determination
Development of the Sexual Organs in the Embryo and Fetus
Near the gonadal ridges, two duct systems are present: the mesonephric ducts (Wolffian ducts) and paramesonephric ducts (Müllerian ducts). These ducts form the basis for the...
Development of Blood Vessels
The initial formation of this system is facilitated by the small amount of yolk present in the ovum and yolk sac. Blood vessels originate from...

