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Mutations disrupting neuritogenesis genes confer risk for cerebral palsy

Authors :
Jeff L. Waugh
Mahalia S.B. Frank
Xiaoyang Wang
Antigone Papavasileiou
Michael C. Sierant
Nadia Badawi
Bohao Zhang
Chongchen Zhou
Sheetal Shetty
Sheng Chih Jin
Susan M Reid
Changlian Zhu
Francisca Millan
Suzanna C. MacLennan
Julien Buratti
David J. Amor
Stephen Pastore
Lance H. Rodan
Timothy Feyma
Janice E. Brunstrom-Hernandez
Kylie E. Crompton
Megan Cho
Helen Magee
Sergio Padilla-Lopez
Julie S. Cohen
Daniela C. Zarnescu
Richard P. Lifton
Aureliane Elie
Michael C. Kruer
Qiongshi Lu
Sandra Whalen
Christopher Castaldi
John B. Vincent
Chao Gao
Irina Tikhonova
Ali Fatemi
Qinghe Xing
Dinah Reddihough
Lei Xia
Bethany Y. Norton
Shozeb Haider
Shrikant Mane
Yana A. Wilson
Dengna Zhu
Yangong Wang
Somayeh Bakhtiari
Francesc López-Giráldez
Michael C Fahey
Clare L. van Eyk
Sarah McIntyre
Jozef Gecz
Junhui Zhang
Xue Zeng
Jennifer Heim
Iona Novak
Spencer Vaughan
John P. Phillips
Sara A. Lewis
Angela E. Lin
Diane Doummar
Mark A. Corbett
Kyle Retterer
James R. Knight
Qing Shang
Boyang Li
Yiran Xu
James Liu
Boris Keren
Sandra M. Nordlie
Kaya Bilguvar
Amar H. Sheth
Dani L. Webber
Alastair H. MacLennan
Brandon S. Guida
Kelly Harper
Jesia G. Berry
Source :
Nat Genet
Publication Year :
2020

Abstract

In addition to commonly associated environmental factors, genomic factors may cause cerebral palsy. We performed whole-exome sequencing of 250 parent-offspring trios, and observed enrichment of damaging de novo mutations in cerebral palsy cases. Eight genes had multiple damaging de novo mutations; of these, two (TUBA1A and CTNNB1) met genome-wide significance. We identified two novel monogenic etiologies, FBXO31 and RHOB, and showed that the RHOB mutation enhances active-state Rho effector binding while the FBXO31 mutation diminishes cyclin D levels. Candidate cerebral palsy risk genes overlapped with neurodevelopmental disorder genes. Network analyses identified enrichment of Rho GTPase, extracellular matrix, focal adhesion and cytoskeleton pathways. Cerebral palsy risk genes in enriched pathways were shown to regulate neuromotor function in a Drosophila reverse genetics screen. We estimate that 14% of cases could be attributed to an excess of damaging de novo or recessive variants. These findings provide evidence for genetically mediated dysregulation of early neuronal connectivity in cerebral palsy.

Details

Language :
English
Database :
OpenAIRE
Journal :
Nat Genet
Accession number :
edsair.doi.dedup.....81b61cf5154431c4aea3d318e3b9d69a