Related Experiment Videos
Requirement of Shp-2 tyrosine phosphatase in lymphoid and hematopoietic cell development
Abstract:
Shp-1 and Shp-2 are cytoplasmic phosphotyrosine phosphatases with similar structures. Mice deficient in Shp-2 die at midgestation with defects in mesodermal patterning, and a hypomorphic mutation at the Shp-1 locus results in the moth-eaten viable (me(v)) phenotype. Previously, a critical role of Shp-2 in mediating erythroid/myeloid cell development was demonstrated. By using the RAG-2-deficient blastocyst complementation, the role of Shp-2 in lymphopoiesis has been determined. Chimeric mice generated by injecting Shp-2(-/-) embryonic stem cells into Rag-2-deficient blastocysts had no detectable mature T and B cells, serum immunoglobulin M, or even Thy-1(+) and B220(+) precursor lymphocytes. Collectively, these results suggest a positive role of Shp-2 in the development of all blood cell lineages, in contrast to the negative effect of Shp-1 in this process. To determine whether Shp-1 and Shp-2 interact in hematopoiesis, Shp-2(-/-):me(v)/me(v) double-mutant embryos were generated and the hematopoietic cell development in the yolk sacs was examined. More hematopoietic stem/progenitor cells were detected in Shp-2(-/-):me(v)/me(v) embryos than in Shp-2(-/-) littermates. The partial rescue by Shp-1 deficiency of the defective hematopoiesis caused by the Shp-2 mutation suggests that Shp-1 and Shp-2 have antagonistic effects in hematopoiesis, possibly through a bidirectional modulation of the same signaling pathway(s).
Insights
The study reveals that SHP-2 phosphatase is crucial for all blood cell development, contrasting with SHP-1
Area of Science:
- Hematology
- Molecular Biology
- Immunology
Background:
- SHP-1 and SHP-2 are related cytoplasmic phosphotyrosine phosphatases.
- SHP-2 deficiency causes midgestation lethality with mesodermal defects.
- SHP-1 mutations lead to the 'moth-eaten viable' phenotype.
Purpose of the Study:
- To elucidate the role of SHP-2 in lymphopoiesis.
- To investigate potential interactions between SHP-1 and SHP-2 in hematopoiesis.
Main Methods:
- Utilized RAG-2-deficient blastocyst complementation to generate chimeric mice.
- Injected SHP-2(-/-) embryonic stem cells into RAG-2-deficient blastocysts.
- Generated and analyzed SHP-2(-/-):me(v)/me(v) double-mutant embryos.
Main Results:
- SHP-2 deficient chimeric mice lacked mature T and B cells and precursor lymphocytes.
- SHP-2 plays a positive role in the development of all blood cell lineages.
- SHP-1 deficiency partially rescued defective hematopoiesis in SHP-2 deficient embryos.
Conclusions:
- SHP-2 is essential for the development of all hematopoietic lineages.
- SHP-1 and SHP-2 exhibit antagonistic roles in hematopoiesis.
- These phosphatases may modulate common signaling pathways bidirectionally.