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Heterozygous loss of WBP11 function causes multiple congenital defects in humans and mice

Authors :
Robert D. Steiner
Yael Lebenthal
Aideen M. McInerney-Leo
Yline Capri
Daphné Lehalle
Adi Mory
Grażyna G Krzemień
Cathy L. Raggio
Monika Miklaszewska
Robert D. Blank
Hila Milo Rasouly
Ali G. Gharavi
Annabelle Enriquez
David T. Humphreys
Emma L. Duncan
Gavin Chapman
Elizabeth Wohler
Paul Leo
Jeanne Amiel
Eddie Ip
Clémantine Dimartino
Christopher T. Gordon
Yael Wilnai
Eleni Giannoulatou
Duncan B. Sparrow
Joelene A Greasby
Hagit Baris Feldman
Delicia Sheng
Rebekah Jobling
Kavitha R Iyer
Philip F Giampietro
Ella M M A Martin
Sally L. Dunwoodie
Nara Sobreira
Source :
Hum Mol Genet
Publication Year :
2020
Publisher :
Oxford University Press, 2020.

Abstract

The genetic causes of multiple congenital anomalies are incompletely understood. Here, we report novel heterozygous predicted loss-of-function (LoF) and predicted damaging missense variants in the WW domain binding protein 11 (WBP11) gene in seven unrelated families with a variety of overlapping congenital malformations, including cardiac, vertebral, tracheo-esophageal, renal and limb defects. WBP11 encodes a component of the spliceosome with the ability to activate pre-messenger RNA splicing. We generated a Wbp11 null allele in mouse using CRISPR-Cas9 targeting. Wbp11 homozygous null embryos die prior to E8.5, indicating that Wbp11 is essential for development. Fewer Wbp11 heterozygous null mice are found than expected due to embryonic and postnatal death. Importantly, Wbp11 heterozygous null mice are small and exhibit defects in axial skeleton, kidneys and esophagus, similar to the affected individuals, supporting the role of WBP11 haploinsufficiency in the development of congenital malformations in humans. LoF WBP11 variants should be considered as a possible cause of VACTERL association as well as isolated Klippel-Feil syndrome, renal agenesis or esophageal atresia.

Details

Language :
English
Database :
OpenAIRE
Journal :
Hum Mol Genet
Accession number :
edsair.doi.dedup.....6d9229c8b2fbc5fe323701900de73f4f
Full Text :
https://doi.org/10.1093/hmg/ddaa258