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Updated: Jun 10, 2026

Analysis of Retinoic Acid-induced Neural Differentiation of Mouse Embryonic Stem Cells in Two and Three-dimensional Embryoid Bodies
Published on: April 22, 2017
Disabled-2 is required for mesoderm differentiation of murine embryonic stem cells
Chien-Ling Huang1, Ju-Chien Cheng, Kenji Kitajima
1Department of Medical Biotechnology and Laboratory Science, Chang Gung University, Taoyuan, Taiwan, Republic of China.
Abstract:
A variety of signaling networks are implicated in the control of mesoderm differentiation. Previous studies demonstrated that Disabled-2 (DAB2) is a multifunctional protein involved in growth factor signaling and embryonic development. In this study, we investigated DAB2 expression and function during in vitro mesoderm differentiation of murine embryonic stem cells (ESCs). We found that DAB2 was up-regulated when ESCs were co-cultured with OP9 stromal cells for mesoderm differentiation. DAB2 was also up-regulated when ESCs were induced for embryoid body formation. Expression of DAB2 short hairpin small interfering RNA (shDAB2) did not alter the puripotency of ESCs. However, shDAB2 disrupted ESCs cell-cell adhesion and affected embryoid body and colony formation that subsequently impeded mesoderm differentiation of ESCs. Immunofluorescent staining revealed that disorganization of beta-catenin and plakoglobin cellular distribution may account for the aberrant cell-cell adhesion in DAB2-deficient cells. Accordingly, DAB2 was identified as a plakoglobin-binding partner with the interaction mediated by the phosphotyrosine binding domain of DAB2 and the Asn-Pro-Asp-Tyr (NPDY) motif of plakoglobin. Molecular analysis and transcriptome profiling also revealed that DAB2 was involved in the regulation of insulin-like growth factor 2-mediated signaling and in the expression of p53, asparagine synthetase and glutathione peroxidase 2. Expression screening of 52 ESCs-related miRNAs further unveiled the interplay between DAB2 and the signaling networks associated with cell death, differentiation and development. This study thereby defines a role of DAB2 in fate determination of ESCs and suggests the presence of a DAB2-associated regulatory circuit in the control of mesoderm differentiation.
Insights
Disabled-2 (DAB2) is crucial for embryonic stem cell (ESC) mesoderm differentiation by regulating cell adhesion and signaling pathways. Its absence disrupts differentiation, highlighting DAB2
Area of Science:
- Cell Biology
- Developmental Biology
- Stem Cell Research
Background:
- Signaling networks control mesoderm differentiation.
- Disabled-2 (DAB2) is a multifunctional protein in growth factor signaling and embryonic development.
- DAB2's role in murine embryonic stem cell (ESC) mesoderm differentiation requires investigation.
Purpose of the Study:
- Investigate DAB2 expression and function during in vitro mesoderm differentiation of murine ESCs.
- Determine DAB2's impact on cell-cell adhesion, embryoid body formation, and differentiation.
- Elucidate the molecular mechanisms and signaling pathways involving DAB2 in ESC fate determination.
Main Methods:
- Murine ESCs were co-cultured with OP9 stromal cells for mesoderm differentiation.
- DAB2 expression was modulated using short hairpin RNA (shDAB2).
- Immunofluorescence, molecular analysis, transcriptome profiling, and miRNA screening were employed.
Main Results:
- DAB2 expression increased during ESC mesoderm differentiation and embryoid body formation.
- shDAB2 disrupted cell-cell adhesion, embryoid body formation, and mesoderm differentiation.
- DAB2 interacts with plakoglobin, affecting beta-catenin and plakoglobin distribution.
- DAB2 regulates IGF2 signaling, p53, asparagine synthetase, and glutathione peroxidase 2 expression.
- DAB2 interacts with miRNA networks controlling cell death, differentiation, and development.
Conclusions:
- DAB2 plays a critical role in ESC mesoderm differentiation by maintaining cell adhesion and influencing key signaling pathways.
- DAB2 interacts with plakoglobin and regulates specific gene expression and miRNA networks.
- A DAB2-associated regulatory circuit is involved in controlling ESC fate determination and mesoderm differentiation.

