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EIF4A3 deficient human iPSCs and mouse models demonstrate neural crest defects that underlie Richieri-Costa-Pereira syndrome.

Publication ,  Journal Article
Miller, EE; Kobayashi, GS; Musso, CM; Allen, M; Ishiy, FAA; de Caires, LC; Goulart, E; Griesi-Oliveira, K; Zechi-Ceide, RM; Richieri-Costa, A ...
Published in: Hum Mol Genet
June 15, 2017

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.

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Published In

Hum Mol Genet

DOI

EISSN

1460-2083

Publication Date

June 15, 2017

Volume

26

Issue

12

Start / End Page

2177 / 2191

Location

England

Related Subject Headings

  • Pierre Robin Syndrome
  • Osteogenesis
  • Neural Crest
  • Mice
  • Induced Pluripotent Stem Cells
  • Humans
  • Hand Deformities, Congenital
  • Genetics & Heredity
  • Eukaryotic Initiation Factor-4A
  • Disease Models, Animal
 

Citation

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Miller, E. E., Kobayashi, G. S., Musso, C. M., Allen, M., Ishiy, F. A. A., de Caires, L. C., … Silver, D. L. (2017). EIF4A3 deficient human iPSCs and mouse models demonstrate neural crest defects that underlie Richieri-Costa-Pereira syndrome. Hum Mol Genet, 26(12), 2177–2191. https://doi.org/10.1093/hmg/ddx078
Miller, Emily E., Gerson S. Kobayashi, Camila M. Musso, Miranda Allen, Felipe A. A. Ishiy, Luiz Carlos de Caires, Ernesto Goulart, et al. “EIF4A3 deficient human iPSCs and mouse models demonstrate neural crest defects that underlie Richieri-Costa-Pereira syndrome.Hum Mol Genet 26, no. 12 (June 15, 2017): 2177–91. https://doi.org/10.1093/hmg/ddx078.
Miller EE, Kobayashi GS, Musso CM, Allen M, Ishiy FAA, de Caires LC, et al. EIF4A3 deficient human iPSCs and mouse models demonstrate neural crest defects that underlie Richieri-Costa-Pereira syndrome. Hum Mol Genet. 2017 Jun 15;26(12):2177–91.
Miller, Emily E., et al. “EIF4A3 deficient human iPSCs and mouse models demonstrate neural crest defects that underlie Richieri-Costa-Pereira syndrome.Hum Mol Genet, vol. 26, no. 12, June 2017, pp. 2177–91. Pubmed, doi:10.1093/hmg/ddx078.
Miller EE, Kobayashi GS, Musso CM, Allen M, Ishiy FAA, de Caires LC, Goulart E, Griesi-Oliveira K, Zechi-Ceide RM, Richieri-Costa A, Bertola DR, Passos-Bueno MR, Silver DL. EIF4A3 deficient human iPSCs and mouse models demonstrate neural crest defects that underlie Richieri-Costa-Pereira syndrome. Hum Mol Genet. 2017 Jun 15;26(12):2177–2191.
Journal cover image

Published In

Hum Mol Genet

DOI

EISSN

1460-2083

Publication Date

June 15, 2017

Volume

26

Issue

12

Start / End Page

2177 / 2191

Location

England

Related Subject Headings

  • Pierre Robin Syndrome
  • Osteogenesis
  • Neural Crest
  • Mice
  • Induced Pluripotent Stem Cells
  • Humans
  • Hand Deformities, Congenital
  • Genetics & Heredity
  • Eukaryotic Initiation Factor-4A
  • Disease Models, Animal