Literature DB >> 12539040

VEGF: a modifier of the del22q11 (DiGeorge) syndrome?

Ingeborg Stalmans1, Diether Lambrechts, Frederik De Smet, Sandra Jansen, Jian Wang, Sunit Maity, Paige Kneer, Maren von der Ohe, Ann Swillen, Christa Maes, Marc Gewillig, Daniel G M Molin, Peter Hellings, Thurid Boetel, Maartin Haardt, Veerle Compernolle, Mieke Dewerchin, Stephane Plaisance, Robert Vlietinck, Beverly Emanuel, Adriana C Gittenberger-de Groot, Peter Scambler, Bernice Morrow, Deborah A Driscol, Lieve Moons, Camila V Esguerra, Geert Carmeliet, Annett Behn-Krappa, Koen Devriendt, Désiré Collen, Simon J Conway, Peter Carmeliet.   

Abstract

Hemizygous deletion of chromosome 22q11 (del22q11) causes thymic, parathyroid, craniofacial and life-threatening cardiovascular birth defects in 1 in 4,000 infants. The del22q11 syndrome is likely caused by haploinsufficiency of TBX1, but its variable expressivity indicates the involvement of additional modifiers. Here, we report that absence of the Vegf164 isoform caused birth defects in mice, reminiscent of those found in del22q11 patients. The close correlation of birth and vascular defects indicated that vascular dysgenesis may pathogenetically contribute to the birth defects. Vegf interacted with Tbx1, as Tbx1 expression was reduced in Vegf164-deficient embryos and knocked-down vegf levels enhanced the pharyngeal arch artery defects induced by tbx1 knockdown in zebrafish. Moreover, initial evidence suggested that a VEGF promoter haplotype was associated with an increased risk for cardiovascular birth defects in del22q11 individuals. These genetic data in mouse, fish and human indicate that VEGF is a modifier of cardiovascular birth defects in the del22q11 syndrome.

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Year:  2003        PMID: 12539040     DOI: 10.1038/nm819

Source DB:  PubMed          Journal:  Nat Med        ISSN: 1078-8956            Impact factor:   53.440


  80 in total

1.  Trigenic neural crest-restricted Smad7 over-expression results in congenital craniofacial and cardiovascular defects.

Authors:  Sunyong Tang; Paige Snider; Antony B Firulli; Simon J Conway
Journal:  Dev Biol       Date:  2010-05-08       Impact factor: 3.582

Review 2.  Combinatorial transcriptional interaction within the cardiac neural crest: a pair of HANDs in heart formation.

Authors:  Anthony B Firulli; Simon J Conway
Journal:  Birth Defects Res C Embryo Today       Date:  2004-06

Review 3.  The neural crest in cardiac congenital anomalies.

Authors:  Anna Keyte; Mary Redmond Hutson
Journal:  Differentiation       Date:  2012-05-15       Impact factor: 3.880

4.  Evaluation of potential modifiers of the palatal phenotype in the 22q11.2 deletion syndrome.

Authors:  Deborah A Driscoll; Torrey Boland; Beverly S Emanuel; Richard E Kirschner; Don LaRossa; Jeanne Manson; Donna McDonald-McGinn; Peter Randall; Cynthia Solot; Elaine Zackai; Laura E Mitchell
Journal:  Cleft Palate Craniofac J       Date:  2006-07

Review 5.  Model systems for the study of heart development and disease. Cardiac neural crest and conotruncal malformations.

Authors:  Mary R Hutson; Margaret L Kirby
Journal:  Semin Cell Dev Biol       Date:  2006-12-19       Impact factor: 7.727

6.  Human TBX1 missense mutations cause gain of function resulting in the same phenotype as 22q11.2 deletions.

Authors:  Christiane Zweier; Heinrich Sticht; Inci Aydin-Yaylagül; Christine E Campbell; Anita Rauch
Journal:  Am J Hum Genet       Date:  2007-01-18       Impact factor: 11.025

7.  Mesodermal expression of Tbx1 is necessary and sufficient for pharyngeal arch and cardiac outflow tract development.

Authors:  Zhen Zhang; Tuong Huynh; Antonio Baldini
Journal:  Development       Date:  2006-08-16       Impact factor: 6.868

8.  Transcription factor TBX1 overexpression induces downregulation of proteins involved in retinoic acid metabolism: a comparative proteomic analysis.

Authors:  Marianna Caterino; Margherita Ruoppolo; Gabriella Fulcoli; Tuong Huynth; Stefania Orrù; Antonio Baldini; Francesco Salvatore
Journal:  J Proteome Res       Date:  2009-03       Impact factor: 4.466

Review 9.  Vascular endothelial growth factor control mechanisms in skeletal growth and repair.

Authors:  Kai Hu; Bjorn R Olsen
Journal:  Dev Dyn       Date:  2016-12-29       Impact factor: 3.780

10.  Neuropilin ligands in vascular and neuronal patterning.

Authors:  Alessandro Fantin; Charlotte H Maden; Christiana Ruhrberg
Journal:  Biochem Soc Trans       Date:  2009-12       Impact factor: 5.407

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