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Expansion of the phenotypic spectrum of de novo missense variants in kinesin family member 1A ( KIF1A )
- Source :
- Kaur, S, Van Bergen, N J, Verhey, K J, Nowell, C J, Budaitis, B, Yue, Y, Ellaway, C, Brunetti-Pierri, N, Cappuccio, G, Bruno, I, Boyle, L, Nigro, V, Torella, A, Roscioli, T, Cowley, M J, Massey, S, Sonawane, R, Burton, M D, Schonewolf-Greulich, B, Tümer, Z, Chung, W K, Gold, W A & Christodoulou, J 2020, ' Expansion of the phenotypic spectrum of de novo missense variants in kinesin family member 1A ( KIF1A ) ', Human Mutation, vol. 41, no. 10, pp. 1761-1774 . https://doi.org/10.1002/humu.24079, Hum Mutat
- Publication Year :
- 2020
- Publisher :
- Hindawi Limited, 2020.
-
Abstract
- Defects in the motor domain of kinesin family member 1A (KIF1A), a neuron-specific ATP-dependent anterograde axonal transporter of synaptic cargo, are well-recognized to cause a spectrum of neurological conditions, commonly known as KIF1A-associated neurological disorders (KAND). Here we report one mutation-negative female with classic Rett syndrome (RTT) harboring a de novo heterozygous novel variant [NP_001230937.1:p.(Asp248Glu)] in the highly-conserved motor domain of KIF1A. In addition, three individuals with severe neurodevelopmental disorder along with clinical features overlapping with KAND are also reported carrying de novo heterozygous novel [NP_001230937.1:p.(Cys92Arg) & p.(Pro305Leu)] or previously reported [NP_001230937.1:p.(Thr99Met)] variants in KIF1A. In silico tools predicted these variants to be likely pathogenic, and 3D molecular modelling predicted defective ATP hydrolysis and/or microtubule binding. Using the neurite tip accumulation assay, we demonstrated that all novel KIF1A variants significantly reduced the ability of the motor domain of KIF1A to accumulate along neurite lengths of differentiated SH-SY5Y cells. In vitro microtubule gliding assays showed significantly reduced velocities for the variant p.(Asp248Glu) and reduced microtubule binding for the p.(Cys92Arg) and p.(Pro305Leu) variants, suggesting decreased ability of KIF1A to move along microtubules. Thus, this study further expanded the phenotypic characteristics of KAND individuals with pathogenic variants in KIF1A motor domain to include clinical features commonly seen in RTT individuals. This article is protected by copyright. All rights reserved.
- Subjects :
- Heterozygote
Neurite
Mutation, Missense
Kinesins
Rett syndrome
Biology
kinesin
Article
MECP2
03 medical and health sciences
Microtubule
Genetics
medicine
Humans
Missense mutation
Family
KIF1A
Genetics (clinical)
030304 developmental biology
KAND
0303 health sciences
030305 genetics & heredity
medicine.disease
Phenotype
neurite tip accumulation
Neurodevelopmental Disorders
Mutation
Kinesin
Female
microtubule
Subjects
Details
- ISSN :
- 10981004 and 10597794
- Volume :
- 41
- Database :
- OpenAIRE
- Journal :
- Human Mutation
- Accession number :
- edsair.doi.dedup.....0ce4359bfac087829bfbf573c90a4e13