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Missense variants in DPYSL5 cause a neurodevelopmental disorder with corpus callosum agenesis and cerebellar abnormalities
- Source :
- American Journal of Human Genetics, American Journal of Human Genetics, 2021, 108 (5), pp.951-961. ⟨10.1016/j.ajhg.2021.04.004⟩, American Journal of Human Genetics, Elsevier (Cell Press), 2021, 108 (5), pp.951-961. ⟨10.1016/j.ajhg.2021.04.004⟩, American Journal of Human Genetics, 108(5), 951-961. Cell Press, American journal of human genetics, vol 108, iss 5, Am J Hum Genet, American journal of human genetics, 108(5), 951-961. Cell Press
- Publication Year :
- 2021
- Publisher :
- HAL CCSD, 2021.
-
Abstract
- International audience; The collapsin response mediator protein (CRMP) family proteins are intracellular mediators of neurotrophic factors regulating neurite structure/spine formation and are essential for dendrite patterning and directional axonal pathfinding during brain developmental processes. Among this family, CRMP5/DPYSL5 plays a significant role in neuronal migration, axonal guidance, dendrite outgrowth, and synapse formation by interacting with microtubules. Here, we report the identification of missense mutations in DPYSL5 in nine individuals with brain malformations, including corpus callosum agenesis and/or posterior fossa abnormalities, associated with variable degrees of intellectual disability. A recurrent de novo p.Glu41Lys variant was found in eight unrelated patients, and a p.Gly47Arg variant was identified in one individual from the first family reported with Ritscher-Schinzel syndrome. Functional analyses of the two missense mutations revealed impaired dendritic outgrowth processes in young developing hippocampal primary neuronal cultures. We further demonstrated that these mutations, both located in the same loop on the surface of DPYSL5 monomers and oligomers, reduced the interaction of DPYSL5 with neuronal cytoskeleton-associated proteins MAP2 and βIII-tubulin. Our findings collectively indicate that the p.Glu41Lys and p.Gly47Arg variants impair DPYSL5 function on dendritic outgrowth regulation by preventing the formation of the ternary complex with MAP2 and βIII-tubulin, ultimately leading to abnormal brain development. This study adds DPYSL5 to the list of genes implicated in brain malformation and in neurodevelopmental disorders.
- Subjects :
- Models, Molecular
Male
0301 basic medicine
Hydrolases
[SDV]Life Sciences [q-bio]
Hippocampal formation
Medical and Health Sciences
0302 clinical medicine
Neurodevelopmental disorder
Tubulin
Models
Neurotrophic factors
Cerebellum
Intellectual disability
2.1 Biological and endogenous factors
Missense mutation
Aetiology
Child
dendrite branching
Genetics (clinical)
de novo missense variants
Pediatric
Genetics & Heredity
DPYSL5
Biological Sciences
[SDV] Life Sciences [q-bio]
corpus callosum agenesis
Mental Health
Child, Preschool
Neurological
Female
Microtubule-Associated Proteins
Adult
Neurite
Intellectual and Developmental Disabilities (IDD)
primary neuronal cultures
Mutation, Missense
Biology
Young Adult
03 medical and health sciences
Rare Diseases
Mediator
Report
Intellectual Disability
Genetics
medicine
Humans
Preschool
Corpus Callosum Agenesis
brain malformation
Neurosciences
Molecular
medicine.disease
neurodevelopmental disorder
Brain Disorders
030104 developmental biology
Neurodevelopmental Disorders
Mutation
Missense
Agenesis of Corpus Callosum
Neuroscience
030217 neurology & neurosurgery
Subjects
Details
- Language :
- English
- ISSN :
- 00029297 and 15376605
- Database :
- OpenAIRE
- Journal :
- American Journal of Human Genetics, American Journal of Human Genetics, 2021, 108 (5), pp.951-961. ⟨10.1016/j.ajhg.2021.04.004⟩, American Journal of Human Genetics, Elsevier (Cell Press), 2021, 108 (5), pp.951-961. ⟨10.1016/j.ajhg.2021.04.004⟩, American Journal of Human Genetics, 108(5), 951-961. Cell Press, American journal of human genetics, vol 108, iss 5, Am J Hum Genet, American journal of human genetics, 108(5), 951-961. Cell Press
- Accession number :
- edsair.doi.dedup.....4e66e0d64a2aebf8eb64fc4124a065ea