Literature DB >> 23221805

Deficiency of FRAS1-related extracellular matrix 1 (FREM1) causes congenital diaphragmatic hernia in humans and mice.

Tyler F Beck1, Danielle Veenma, Oleg A Shchelochkov, Zhiyin Yu, Bum Jun Kim, Hitisha P Zaveri, Yolande van Bever, Sunju Choi, Hannie Douben, Terry K Bertin, Pragna I Patel, Brendan Lee, Dick Tibboel, Annelies de Klein, David W Stockton, Monica J Justice, Daryl A Scott.   

Abstract

Congenital diaphragmatic hernia (CDH) is a common life-threatening birth defect. Recessive mutations in the FRAS1-related extracellular matrix 1 (FREM1) gene have been shown to cause bifid nose with or without anorectal and renal anomalies (BNAR) syndrome and Manitoba oculotrichoanal (MOTA) syndrome, but have not been previously implicated in the development of CDH. We have identified a female child with an isolated left-sided posterolateral CDH covered by a membranous sac who had no features suggestive of BNAR or MOTA syndromes. This child carries a maternally-inherited ~86 kb FREM1 deletion that affects the expression of FREM1's full-length transcripts and a paternally-inherited splice site mutation that causes activation of a cryptic splice site, leading to a shift in the reading frame and premature termination of all forms of the FREM1 protein. This suggests that recessive FREM1 mutations can cause isolated CDH in humans. Further evidence for the role of FREM1 in the development of CDH comes from an N-ethyl-N-nitrosourea -derived mouse strain, eyes2, which has a homozygous truncating mutation in Frem1. Frem1(eyes2) mice have eye defects, renal agenesis and develop retrosternal diaphragmatic hernias which are covered by a membranous sac. We confirmed that Frem1 is expressed in the anterior portion of the developing diaphragm and found that Frem1(eyes2) embryos had decreased levels of cell proliferation in their developing diaphragms when compared to wild-type embryos. We conclude that FREM1 plays a critical role in the development of the diaphragm and that FREM1 deficiency can cause CDH in both humans and mice.

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Year:  2012        PMID: 23221805      PMCID: PMC3561915          DOI: 10.1093/hmg/dds507

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  50 in total

Review 1.  Let's stick together: the role of the Fras1 and Frem proteins in epidermal adhesion.

Authors:  Kieran Short; Fenny Wiradjaja; Ian Smyth
Journal:  IUBMB Life       Date:  2007-07       Impact factor: 3.885

2.  The lung-to-thorax transverse area ratio at term and near term correlates with survival in isolated congenital diaphragmatic hernia.

Authors:  Kiyomi Tsukimori; Kouji Masumoto; Seiichi Morokuma; Takazumi Yoshimura; Tomoaki Taguchi; Toshiro Hara; Yoshiro Sakaguchi; Shosuke Takahashi; Norio Wake; Sachiyo Suita
Journal:  J Ultrasound Med       Date:  2008-05       Impact factor: 2.153

Review 3.  Genetic factors in congenital diaphragmatic hernia.

Authors:  A M Holder; M Klaassens; D Tibboel; A de Klein; B Lee; D A Scott
Journal:  Am J Hum Genet       Date:  2007-04-04       Impact factor: 11.025

4.  Congenital diaphragmatic hernia is part of the new 15q24 microdeletion syndrome.

Authors:  Hilde Van Esch; Liesbeth Backx; Elly Pijkels; Jean-Pierre Fryns
Journal:  Eur J Med Genet       Date:  2009-02-21       Impact factor: 2.708

5.  Associated malformations in cases with congenital diaphragmatic hernia.

Authors:  C Stoll; Y Alembik; B Dott; M-P Roth
Journal:  Genet Couns       Date:  2008

6.  Chromosome 8p23.1 deletions as a cause of complex congenital heart defects and diaphragmatic hernia.

Authors:  Margaret J Wat; Oleg A Shchelochkov; Ashley M Holder; Amy M Breman; Aditi Dagli; Carlos Bacino; Fernando Scaglia; Roberto T Zori; Sau Wai Cheung; Daryl A Scott; Sung-Hae Lee Kang
Journal:  Am J Med Genet A       Date:  2009-08       Impact factor: 2.802

Review 7.  Can we improve outcome of congenital diaphragmatic hernia?

Authors:  L van den Hout; I Sluiter; S Gischler; A De Klein; R Rottier; H Ijsselstijn; I Reiss; D Tibboel
Journal:  Pediatr Surg Int       Date:  2009-09       Impact factor: 1.827

Review 8.  Genetics of congenital diaphragmatic hernia.

Authors:  Daryl A Scott
Journal:  Semin Pediatr Surg       Date:  2007-05       Impact factor: 2.754

9.  FREM1 mutations cause bifid nose, renal agenesis, and anorectal malformations syndrome.

Authors:  Anas M Alazami; Ranad Shaheen; Fatema Alzahrani; Katie Snape; Anand Saggar; Bernd Brinkmann; Prashant Bavi; Lihadh I Al-Gazali; Fowzan S Alkuraya
Journal:  Am J Hum Genet       Date:  2009-09       Impact factor: 11.025

Review 10.  Prenatal detection and outcome of congenital diaphragmatic hernia (CDH) associated with deletion of chromosome 15q26: two patients and review of the literature.

Authors:  M Klaassens; R J H Galjaard; D A Scott; H T Brüggenwirth; D van Opstal; M V Fox; R R Higgins; T E Cohen-Overbeek; E M Schoonderwaldt; B Lee; D Tibboel; A de Klein
Journal:  Am J Med Genet A       Date:  2007-09-15       Impact factor: 2.802

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  18 in total

1.  Mesenchymal expression of the FRAS1/FREM2 gene unit is decreased in the developing fetal diaphragm of nitrofen-induced congenital diaphragmatic hernia.

Authors:  Toshiaki Takahashi; Florian Friedmacher; Julia Zimmer; Prem Puri
Journal:  Pediatr Surg Int       Date:  2015-10-30       Impact factor: 1.827

Review 2.  The influence of genetics in congenital diaphragmatic hernia.

Authors:  Lan Yu; Rebecca R Hernan; Julia Wynn; Wendy K Chung
Journal:  Semin Perinatol       Date:  2019-08-01       Impact factor: 3.300

Review 3.  Genetic causes of congenital diaphragmatic hernia.

Authors:  Julia Wynn; Lan Yu; Wendy K Chung
Journal:  Semin Fetal Neonatal Med       Date:  2014-10-28       Impact factor: 3.926

4.  FBN1 contributing to familial congenital diaphragmatic hernia.

Authors:  Tyler F Beck; Philippe M Campeau; Shalini N Jhangiani; Tomasz Gambin; Alexander H Li; Reem Abo-Zahrah; Valerie K Jordan; Andres Hernandez-Garcia; Wojciech K Wiszniewski; Donna Muzny; Richard A Gibbs; Eric Boerwinkle; James R Lupski; Brendan Lee; Willie Reardon; Daryl A Scott
Journal:  Am J Med Genet A       Date:  2015-03-03       Impact factor: 2.802

Review 5.  Underlying genetic etiologies of congenital diaphragmatic hernia.

Authors:  Daryl A Scott; Yoel Gofin; Aliska M Berry; April D Adams
Journal:  Prenat Diagn       Date:  2022-01-22       Impact factor: 3.050

6.  Decreased Desmin expression in the developing diaphragm of the nitrofen-induced congenital diaphragmatic hernia rat model.

Authors:  Toshiaki Takahashi; Florian Friedmacher; Julia Zimmer; Prem Puri
Journal:  Pediatr Surg Int       Date:  2016-09-20       Impact factor: 1.827

7.  The role of FREM2 and FRAS1 in the development of congenital diaphragmatic hernia.

Authors:  Valerie K Jordan; Tyler F Beck; Andres Hernandez-Garcia; Peter N Kundert; Bum-Jun Kim; Shalini N Jhangiani; Tomasz Gambin; Molly Starkovich; Jaya Punetha; Ingrid S Paine; Jennifer E Posey; Alexander H Li; Donna Muzny; Chih-Wei Hsu; Amber J Lashua; Xin Sun; Caraciolo J Fernandes; Mary E Dickinson; Kevin P Lally; Richard A Gibbs; Eric Boerwinkle; James R Lupski; Daryl A Scott
Journal:  Hum Mol Genet       Date:  2018-06-15       Impact factor: 6.150

8.  Laparoscopic repair of a late-presenting Bochdalek diaphragmatic hernia with acute gastric volvulus.

Authors:  Christopher Hadjittofi; Ibrahim Matter; Ori Eyal; Nadav Slijper
Journal:  BMJ Case Rep       Date:  2013-03-20

9.  Clinical exome sequencing data reveal high diagnostic yields for congenital diaphragmatic hernia plus (CDH+) and new phenotypic expansions involving CDH.

Authors:  Tiana M Scott; Ian M Campbell; Andres Hernandez-Garcia; Seema R Lalani; Pengfei Liu; Chad A Shaw; Jill A Rosenfeld; Daryl A Scott
Journal:  J Med Genet       Date:  2021-01-18       Impact factor: 6.318

10.  An allelic series of mice reveals a role for RERE in the development of multiple organs affected in chromosome 1p36 deletions.

Authors:  Bum Jun Kim; Hitisha P Zaveri; Oleg A Shchelochkov; Zhiyin Yu; Andrés Hernández-García; Michelle L Seymour; John S Oghalai; Fred A Pereira; David W Stockton; Monica J Justice; Brendan Lee; Daryl A Scott
Journal:  PLoS One       Date:  2013-02-25       Impact factor: 3.240

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