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Published on: July 29, 2015
EIF4A3 deficient human iPSCs and mouse models demonstrate neural crest defects that underlie Richieri-Costa-Pereira
Emily E Miller1, Gerson S Kobayashi2, Camila M Musso2
1Department of Molecular Genetics and Microbiology, Duke University Medical Center, Durham, NC, USA.
Abstract:
Biallelic loss-of-function mutations in the RNA-binding protein EIF4A3 cause Richieri-Costa-Pereira syndrome (RCPS), an autosomal recessive condition mainly characterized by craniofacial and limb malformations. However, the pathogenic cellular mechanisms responsible for this syndrome are entirely unknown. Here, we used two complementary approaches, patient-derived induced pluripotent stem cells (iPSCs) and conditional Eif4a3 mouse models, to demonstrate that defective neural crest cell (NCC) development explains RCPS craniofacial abnormalities. RCPS iNCCs have decreased migratory capacity, a distinct phenotype relative to other craniofacial disorders. Eif4a3 haploinsufficient embryos presented altered mandibular process fusion and micrognathia, thus recapitulating the most penetrant phenotypes of the syndrome. These defects were evident in either ubiquitous or NCC-specific Eif4a3 haploinsufficient animals, demonstrating an autonomous requirement of Eif4a3 in NCCs. Notably, RCPS NCC-derived mesenchymal stem-like cells (nMSCs) showed premature bone differentiation, a phenotype paralleled by premature clavicle ossification in Eif4a3 haploinsufficient embryos. Likewise, nMSCs presented compromised in vitro chondrogenesis, and Meckel's cartilage was underdeveloped in vivo. These findings indicate novel and essential requirements of EIF4A3 for NCC migration and osteochondrogenic differentiation during craniofacial development. Altogether, complementary use of iPSCs and mouse models pinpoint unique cellular mechanisms by which EIF4A3 mutation causes RCPS, and provide a paradigm to study craniofacial disorders.
Insights
Mutations in EIF4A3 cause Richieri-Costa-Pereira syndrome (RCPS), affecting craniofacial development. Defective neural crest cell migration and differentiation underlie RCPS, revealed through stem cell and mouse models.
Area of Science:
- Developmental Biology
- Genetics
- Stem Cell Biology
Background:
- Richieri-Costa-Pereira syndrome (RCPS) is an autosomal recessive disorder caused by EIF4A3 mutations.
- The cellular mechanisms driving RCPS craniofacial and limb malformations remain largely unknown.
Purpose of the Study:
- To elucidate the cellular and molecular mechanisms underlying RCPS pathogenesis.
- To investigate the role of EIF4A3 in neural crest cell (NCC) development and craniofacial formation.
Main Methods:
- Utilized patient-derived induced pluripotent stem cells (iPSCs) and conditional Eif4a3 knockout mouse models.
- Analyzed NCC migration, differentiation, and craniofacial bone development in vitro and in vivo.
Main Results:
- RCPS patient-derived NCCs exhibited impaired migration.
- Eif4a3 haploinsufficiency in mice recapitulated key RCPS phenotypes like micrognathia.
- NCC-derived cells showed altered osteogenic and chondrogenic differentiation, with premature bone formation observed in vivo.
Conclusions:
- EIF4A3 is crucial for NCC migration and osteochondrogenic differentiation during craniofacial development.
- Defective NCC development is a primary mechanism driving RCPS craniofacial abnormalities.
- This study provides a framework for understanding RCPS and other craniofacial disorders.
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