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SRPK3 Is Essential for Cognitive and Ocular Development in Humans and Zebrafish, Explaining X‐Linked Intellectual Disability

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posted on 2024-09-30, 11:35 authored by Arkaprava Roychaudhury, Yu‐Ri Lee, Tae‐Ik Choi, Mervyn G Thomas, Tahir N Khan, Hammad Yousaf, Cindy Skinner, Gail Maconachie, Moira Crosier, Holli Horak, Cris S Constantinescu, Tae‐Yoon Kim, Kang‐Han Lee, Jae‐Jun Kyung, Tao Wang, Bonsu Ku, Bernard N Chodirker, Michael F Hammer, Irene Gottlob, William HJ Norton, Robert Gerlai, Hyung‐Goo Kim, Claudio Graziano, Tommaso Pippucci, Emanuela Iovino, Francesca Montanari, Giulia Severi, Camilo Toro, Cornelius F Boerkoel, Hyo Sun Cha, Cheol Yong Choi, Sungjin Kim, Je‐Hyun Yoon, Kelly Gilmore, Neeta L Vora, Erica E Davis, Albert E Chudley, Charles E Schwartz, Cheol‐Hee Kim
ObjectiveIntellectual disability is often the outcome of neurodevelopmental disorders and is characterized by significant impairments in intellectual and adaptive functioning. X‐linked intellectual disability (XLID) is a subset of these disorders caused by genetic defects on the X chromosome, affecting about 2 out of 1,000 males. In syndromic form, it leads to a broad range of cognitive, behavioral, ocular, and physical disabilities.MethodsEmploying exome or genome sequencing, here we identified 4 missense variants (c.475C > G; p.H159D, c.1373C > A; p.T458N, and c.1585G > A; p.E529K, c.953C > T; p.S318L) and a putative truncating variant (c.1413_1414del; p.Y471*) in the SRPK3 gene in 9 XLID patients from 5 unrelated families. To validate SRPK3 as a novel XLID gene, we established a knockout (KO) model of the SRPK3 orthologue in zebrafish.ResultsThe 8 patients ascertained postnatally shared common clinical features including intellectual disability, agenesis of the corpus callosum, abnormal eye movement, and ataxia. A ninth case, ascertained prenatally, had a complex structural brain phenotype. Together, these data indicate a pathological role of SRPK3 in neurodevelopmental disorders. In post‐fertilization day 5 larvae (free swimming stage), KO zebrafish exhibited severe deficits in eye movement and swim bladder inflation, mimicking uncontrolled ocular movement and physical clumsiness observed in human patients. In adult KO zebrafish, cerebellar agenesis and behavioral abnormalities were observed, recapitulating human phenotypes of cerebellar atrophy and intellectual disability.InterpretationOverall, these results suggest a crucial role of SRPK3 in the pathogenesis of syndromic X‐linked intellectual disability and provide new insights into brain development, cognitive and ocular dysfunction in both humans and zebrafish. ANN NEUROL 2024

Funding

Genomics and functional dissection of fetal brain abnormalities using a prenatal cohort

Eunice Kennedy Shriver National Institute of Child Health and Human Development

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Functional Dissection of CNVs in Neurodevelopmental Traits

National Institute of Mental Health

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Identification of Novel X-linked Intellectual Disability Genes

National Institute of Neurological Disorders and Stroke

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Natural Sciences and Engineering Research Council of Canada. Grant Number: 311637

The South Carolina Department of Disabilities and Special Needs. Grant Number: 2015-45

Ministry of Oceans and Fisheries. Grant Number: 20220027

Improving diagnostic pathways in ophthalmology and genomic medicine

National Institute for Health Research

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National Research Foundation of Korea. Grant Numbers: 2020R1A5A8017671, RS-2024-00349650

Ministero Italiano della Salute, Programma di Ricerca Finalizzata 2018. Grant Number: RF-2018- 12366314

History

Author affiliation

College of Life Sciences Psychology & Vision Sciences Not Current

Version

  • VoR (Version of Record)

Published in

Annals of Neurology

Publisher

Wiley

issn

0364-5134

eissn

1531-8249

Copyright date

2024

Available date

2024-09-30

Spatial coverage

United States

Language

en

Deposited by

Dr Mervyn Thomas

Deposit date

2024-08-29

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