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    Mutations disrupting neuritogenesis genes confer risk for cerebral palsy

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    Author
    Jin, Sheng Chih
    Lewis, Sara A
    Bakhtiari, Somayeh
    Zeng, Xue
    Sierant, Michael C
    Shetty, Sheetal
    Nordlie, Sandra M
    Elie, Aureliane
    Corbett, Mark A
    Norton, Bethany Y
    van Eyk, Clare L
    Haider, Shozeb
    Guida, Brandon S
    Magee, Helen
    Liu, James
    Pastore, Stephen
    Vincent, John B
    Brunstrom-Hernandez, Janice
    Papavasileiou, Antigone
    Fahey, Michael C
    Berry, Jesia G
    Harper, Kelly
    Zhou, Chongchen
    Zhang, Junhui
    Li, Boyang
    Heim, Jennifer
    Webber, Dani L
    Frank, Mahalia S B
    Xia, Lei
    Xu, Yiran
    Zhu, Dengna
    Zhang, Bohao
    Sheth, Amar H
    Knight, James R
    Castaldi, Christopher
    Tikhonova, Irina R
    López-Giráldez, Francesc
    Keren, Boris
    Whalen, Sandra
    Buratti, Julien
    Doummar, Diane
    Cho, Megan
    Retterer, Kyle
    Millan, Francisca
    Wang, Yangong
    Waugh, Jeff L
    Rodan, Lance
    Cohen, Julie S
    Fatemi, Ali
    Lin, Angela E
    Phillips, John P
    Feyma, Timothy
    MacLennan, Suzanna C
    Vaughan, Spencer cc
    Crompton, Kylie E
    Reid, Susan M
    Reddihough, Dinah S
    Shang, Qing
    Gao, Chao
    Novak, Iona
    Badawi, Nadia
    Wilson, Yana A
    McIntyre, Sarah J
    Mane, Shrikant M
    Wang, Xiaoyang
    Amor, David J
    Zarnescu, Daniela C
    Lu, Qiongshi
    Xing, Qinghe
    Zhu, Changlian
    Bilguvar, Kaya
    Padilla-Lopez, Sergio
    Lifton, Richard P
    Gecz, Jozef
    MacLennan, Alastair H
    Kruer, Michael C
    Show allShow less
    Affiliation
    Univ Arizona, Coll Med, Dept Child Hlth
    Univ Arizona, Coll Med, Dept Neurol
    Univ Arizona, Coll Med, Dept Cellular & Mol Med
    Univ Arizona, Coll Med, Program Genet
    Univ Arizona, Dept Mol & Cell Biol
    Univ Arizona, Dept Neurosci
    Issue Date
    2020-09-28
    
    Metadata
    Show full item record
    Publisher
    NATURE RESEARCH
    Citation
    Jin, S.C., Lewis, S.A., Bakhtiari, S. et al. Mutations disrupting neuritogenesis genes confer risk for cerebral palsy. Nat Genet 52, 1046–1056 (2020). https://doi.org/10.1038/s41588-020-0695-1
    Journal
    NATURE GENETICS
    Rights
    Copyright © 2020, The Author(s), under exclusive licence to Springer Nature America, Inc.
    Collection Information
    This item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu.
    Abstract
    Whole-exome sequencing of 250 parent-offspring trios identifies an enrichment of rare damaging de novo mutations in individuals with cerebral palsy and implicates genetically mediated dysregulation of early neuronal connectivity in the etiology of this disorder. 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.
    Note
    6 month embargo; published 28 September 2020
    ISSN
    1061-4036
    EISSN
    1546-1718
    PubMed ID
    32989326
    DOI
    10.1038/s41588-020-0695-1
    Version
    Final accepted manuscript
    ae974a485f413a2113503eed53cd6c53
    10.1038/s41588-020-0695-1
    Scopus Count
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    UA Faculty Publications

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