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VACTERL/caudal regression/Currarino syndrome-like malformations in mice with mutation in the proprotein convertase Pcsk5

Authors :
Shoumo Bhattacharya
Daniel B. Constam
Zuzanna Tymowska-Lalanne
D.K. Stammers
Dorota Szumska
Sebastian J. Arnold
Daniel Mesnard
Rachid Essalmani
Paul Johnson
Steve D.M. Brown
Kulvinder Kaur
Kamel El Omari
Jürgen E. Schneider
Charles Shaw-Smith
Jiannis Ragoussis
Michal Bilski
Nabil G. Seidah
Guido E Pieles
Angela Franklyn
Valeria Capra
Jennifer M. Taylor
Joanna Jefferis
Andrew D. Morris
Kieran Clarke
Jamie Bentham
Annik Prat
Armando Cama
Stefan Neubauer
Source :
Genes & Development. 22:1465-1477
Publication Year :
2008
Publisher :
Cold Spring Harbor Laboratory, 2008.

Abstract

We have identified an ethylnitrosourea (ENU)-induced recessive mouse mutation (Vcc) with a pleiotropic phenotype that includes cardiac, tracheoesophageal, anorectal, anteroposterior patterning defects, exomphalos, hindlimb hypoplasia, a presacral mass, renal and palatal agenesis, and pulmonary hypoplasia. It results from a C470R mutation in the proprotein convertase PCSK5 (PC5/6). Compound mutants (Pcsk5Vcc/null) completely recapitulate the Pcsk5Vcc/Vcc phenotype, as does an epiblast-specific conditional deletion of Pcsk5. The C470R mutation ablates a disulfide bond in the P domain, and blocks export from the endoplasmic reticulum and proprotein convertase activity. We show that GDF11 is cleaved and activated by PCSK5A, but not by PCSK5A-C470R, and that Gdf11-deficient embryos, in addition to having anteroposterior patterning defects and renal and palatal agenesis, also have a presacral mass, anorectal malformation, and exomphalos. Pcsk5 mutation results in abnormal expression of several paralogous Hox genes (Hoxa, Hoxc, and Hoxd), and of Mnx1 (Hlxb9). These include known Gdf11 targets, and are necessary for caudal embryo development. We identified nonsynonymous mutations in PCSK5 in patients with VACTERL (vertebral, anorectal, cardiac, tracheoesophageal, renal, limb malformation OMIM 192350) and caudal regression syndrome, the phenotypic features of which resemble the mouse mutation. We propose that Pcsk5, at least in part via GDF11, coordinately regulates caudal Hox paralogs, to control anteroposterior patterning, nephrogenesis, skeletal, and anorectal development.

Details

ISSN :
15495477 and 08909369
Volume :
22
Database :
OpenAIRE
Journal :
Genes & Development
Accession number :
edsair.doi.dedup.....6412910b6c1c597c5cc343886f136a79
Full Text :
https://doi.org/10.1101/gad.479408