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Expansion of the phenotypic spectrum of de novo missense variants in kinesin family member 1A ( KIF1A )

Authors :
Kristen J. Verhey
Simranpreet Kaur
Matthew D. Burton
Wendy K. Chung
Zeynep Tümer
Breane G. Budaitis
Nicole J Van Bergen
Bitten Schönewolf-Greulich
Rhea Sonawane
Cameron J. Nowell
Annalaura Torella
Yang Yue
Nicola Brunetti-Pierri
Gerarda Cappuccio
Lia Boyle
John Christodoulou
Tony Roscioli
Mark J. Cowley
Carolyn Ellaway
Wendy A. Gold
Irene Bruno
Sean Massey
Vincenzo Nigro
Kaur, Simranpreet
Van Bergen, Nicole J
Verhey, Kristen J
Nowell, Cameron J
Budaitis, Breane
Yue, Yang
Ellaway, Carolyn
Brunetti-Pierri, Nicola
Cappuccio, Gerarda
Bruno, Irene
Boyle, Lia
Nigro, Vincenzo
Torella, Annalaura
Roscioli, Tony
Cowley, Mark J
Massey, Sean
Sonawane, Rhea
Burton, Matthew D
Schonewolf-Greulich, Bitten
Tümer, Zeynep
Chung, Wendy K
Gold, Wendy A
Christodoulou, John
Kaur, S.
Van Bergen, N. J.
Verhey, K. J.
Nowell, C. J.
Budaitis, B.
Yue, Y.
Ellaway, C.
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.
Tumer, Z.
Chung, W. K.
Gold, W. A.
Christodoulou, J.
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.

Details

ISSN :
10981004 and 10597794
Volume :
41
Database :
OpenAIRE
Journal :
Human Mutation
Accession number :
edsair.doi.dedup.....0ce4359bfac087829bfbf573c90a4e13