Defining the Genetic Landscape of Congenital Mirror Movements in 80 Affected Individuals

Author:

Collins Hutchinson Meagan L.12,St‐Onge Judith1,Schlienger Sabrina3,Boudrahem‐Addour Nassima1,Mougharbel Lina1,Michaud Jean‐Francois3,Lloyd Clara1,Bruneau Elena1,Roux Cedric4,Sahly Ahmed N.56,Osterman Bradley57,Myers Kenneth A.157,Rouleau Guy A.8ORCID,Jimenez Cruz Daniel Alexander4,Rivière Jean‐Baptiste19,Accogli Andrea1910,Charron Frederic31112,Srour Myriam157ORCID

Affiliation:

1. Research Institute of the McGill University Health Centre Montreal Quebec Canada

2. Jacobs School of Medicine and Biomedical Sciences State University of New York at Buffalo Buffalo New York USA

3. Montreal Clinical Research Institute Montreal Quebec Canada

4. Bioinformatics Platform Research Institute of the McGill University Health Centre Montreal Quebec Canada

5. Department of Pediatrics, Division of Pediatric Neurology McGill University Montreal Quebec Canada

6. Department of Neurosciences King Faisal Specialist Hospital and Research Centre Jeddah Saudi Arabia

7. Department of Neurology and Neurosurgery McGill University Montreal Quebec Canada

8. Montréal Neurological Institute‐Hospital McGill University Montréal Quebec Canada

9. Department of Specialized Medicine, Division of Medical Genetics McGill University Health Centre Montreal Quebec Canada

10. Department of Human Genetics, Faculty of Medicine McGill University Montreal Quebec Canada

11. Department of Anatomy and Cell Biology, Division of Experimental Medicine McGill University Montreal Quebec Canada

12. Department of Medicine University of Montreal Montreal Quebec Canada

Abstract

AbstractBackgroundCongenital mirror movements (CMM) is a rare neurodevelopmental disorder characterized by involuntary movements from one side of the body that mirror voluntary movements on the opposite side. To date, five genes have been associated with CMM, namely DCC, RAD51, NTN1, ARHGEF7, and DNAL4.ObjectiveThe aim of this study is to characterize the genetic landscape of CMM in a large group of 80 affected individuals.MethodsWe screened 80 individuals with CMM from 43 families for pathogenic variants in CMM genes. In large CMM families, we tested for presence of pathogenic variants in multiple affected and unaffected individuals. In addition, we evaluated the impact of three missense DCC variants on binding between DCC and Netrin‐1 in vitro.ResultsCausal pathogenic/likely pathogenic variants were found in 35% of probands overall, and 70% with familial CMM. The most common causal gene was DCC, responsible for 28% of CMM probands and 80% of solved cases. RAD51, NTN1, and ARHGEF7 were rare causes of CMM, responsible for 2% each. Penetrance of CMM in DCC pathogenic variant carriers was 68% and higher in males than females (74% vs. 54%). The three tested missense variants (p.Ile164Thr; p.Asn176Ser; and p.Arg1343His) bind Netrin‐1 similarly to wild type DCC.ConclusionsA genetic etiology can be identified in one third of CMM individuals, with DCC being the most common gene involved. Two thirds of CMM individuals were unsolved, highlighting that CMM is genetically heterogeneous and other CMM genes are yet to be discovered. © 2024 The Authors. Movement Disorders published by Wiley Periodicals LLC on behalf of International Parkinson and Movement Disorder Society.

Funder

Canada Foundation for Innovation

Canadian Institutes of Health Research

Publisher

Wiley

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