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PMID: 18159945 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Shp2 knockdown and Noonan/LEOPARD mutant Shp2-induced gastrulation defects.

PLoS genetics ·Vol. 3 ·No. 12 ·2007-12-00 ·Pages e225

Jopling C, van Geemen D, den Hertog J

Abstract

Shp2 is a cytoplasmic protein-tyrosine phosphatase that is essential for normal development. Activating and inactivating mutations have been identified in humans to cause the related Noonan and LEOPARD syndromes, respectively. The cell biological cause of these syndromes remains to be determined. We have used the zebrafish to assess the role of Shp2 in early development. Here, we report that morpholino-mediated knockdown of Shp2 in zebrafish resulted in defects during gastrulation. Cell tracing experiments demonstrated that Shp2 knockdown induced defects in convergence and extension cell movements. In situ hybridization using a panel of markers indicated that cell fate was not affected by Shp2 knock down. The Shp2 knockdown-induced defects were rescued by active Fyn and Yes and by active RhoA. We generated mutants of Shp2 with mutations that were identified in human patients with Noonan or LEOPARD Syndrome and established that Noonan Shp2 was activated and LEOPARD Shp2 lacked catalytic protein-tyrosine phosphatase activity. Expression of Noonan or LEOPARD mutant Shp2 in zebrafish embryos induced convergence and extension cell movement defects without affecting cell fate. Moreover, these embryos displayed craniofacial and cardiac defects, reminiscent of human symptoms. Noonan and LEOPARD mutant Shp2s were not additive nor synergistic, consistent with the mutant Shp2s having activating and inactivating roles in the same signaling pathway. Our results demonstrate that Shp2 is required for normal convergence and extension cell movements during gastrulation and that Src family kinases and RhoA were downstream of Shp2. Expression of Noonan or LEOPARD Shp2 phenocopied the craniofacial and cardiac defects of human patients. The finding that defective Shp2 signaling induced cell movement defects as early as gastrulation may have implications for the monitoring and diagnosis of Noonan and LEOPARD syndrome.

MeSH Terms
Animals Cell Differentiation Cell Movement Disease Models, Animal Gastrulation Gene Expression Regulation, Developmental Gene Expression Regulation, Enzymologic Gene Targeting Humans LEOPARD Syndrome/enzymology,genetics Mutation Noonan Syndrome/enzymology,genetics Protein Tyrosine Phosphatase, Non-Receptor Type 11/deficiency,genetics,physiology Proto-Oncogene Proteins c-fyn/physiology Proto-Oncogene Proteins c-yes/physiology Signal Transduction Zebrafish/embryology,genetics,physiology Zebrafish Proteins/physiology rhoA GTP-Binding Protein/physiology
Chemicals
Zebrafish Proteins Proto-Oncogene Proteins c-fyn Proto-Oncogene Proteins c-yes fyna protein, zebrafish yes1 protein, zebrafish PTPN11 protein, human Protein Tyrosine Phosphatase, Non-Receptor Type 11 rhoA GTP-Binding Protein
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Jopling Chris
Hubrecht Institute, Utrecht, The Netherlands.
van Geemen Daphne
den Hertog Jeroen
Conflict of Interest

Competing interests. The authors have declared that no competing interests exist.

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Article Info
Journal
PLoS genetics
Abbr.
PLoS Genet
ISSN
1553-7404
Published
2007-12-00
Pages
e225
Language
English
Region
United States
NLM ID
101239074
PMCID
PMC2151089
Subset
IM
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