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The Nf2 tumor suppressor gene product is essential for extraembryonic development immediately prior to gastrulation
A I McClatchey1, I Saotome, V Ramesh
1Center for Cancer Research, Massachusetts Institute of Technology, Cambridge 02139, USA.
Abstract:
The neurofibromatosis type II (NF2) tumor suppressor encodes a putative cytoskeletal associated protein, the loss of which leads to the development of Schwann cell tumors associated with NF2 in humans. The NF2 protein merlin belongs to the band 4.1 family of proteins that link membrane proteins to the cytoskeleton and are thought to be involved in dynamic cytoskeletal reorganization. Beyond its membership in this family, however, the function of merlin remains poorly understood. In order to analyze the function of merlin during embryogenesis and to develop a system to study merlin function in detail, we have disrupted the mouse Nf2 gene by homologous recombination in embryonic stem cells. Most embryos homozygous for a mutation at the Nf2 locus fail between embryonic days 6.5 and 7.0, exhibiting a collapsed extraembryonic region and the absence of organized extraembryonic ectoderm. The embryo proper continues to develop, but fails to initiate gastrulation. These observations are supported by the expression patterns of markers of the extraembryonic lineage and the lack of expression of mesodermal markers in the mutant embryos. Mosaic studies demonstrate that merlin function is not required cell autonomously in mesoderm, and support the proposition that merlin function is essential for the development of extraembryonic structures during early mouse development.
Insights
The neurofibromatosis type II (NF2) tumor suppressor, merlin, is crucial for early mouse development. Loss of merlin function prevents proper extraembryonic structure formation, leading to embryonic lethality.
Area of Science:
- Developmental Biology
- Cell Biology
- Genetics
Background:
- Neurofibromatosis type II (NF2) is a tumor suppressor gene.
- The NF2 protein, merlin, links the cytoskeleton to membrane proteins.
- Merlin's precise function in embryogenesis is largely unknown.
Purpose of the Study:
- To investigate merlin's role during mouse embryogenesis.
- To establish a system for detailed merlin function studies.
Main Methods:
- Disruption of the mouse Nf2 gene using homologous recombination in embryonic stem cells.
- Analysis of embryonic development and gene expression patterns.
- Mosaic studies to assess cell-autonomous requirements.
Main Results:
- Homozygous Nf2-mutant embryos exhibit lethality between embryonic days 6.5 and 7.0.
- Mutant embryos show collapsed extraembryonic regions and failed gastrulation.
- Merlin function is essential for extraembryonic structure development, not cell-autonomous in mesoderm.
Conclusions:
- Merlin is essential for extraembryonic development in early mouse embryogenesis.
- Merlin's function is critical for initiating gastrulation.
- The Nf2 gene plays a vital role in embryonic development beyond its tumor suppressor function.