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Variants in KIF1A gene in dominant and sporadic forms of hereditary spastic paraparesis.

Authors :
Citterio, Andrea
Arnoldi, Alessia
Panzeri, Elena
Merlini, Luciano
D'Angelo, Maria
Musumeci, Olimpia
Toscano, Antonio
Bondi, Alice
Martinuzzi, Andrea
Bresolin, Nereo
Bassi, Maria
Source :
Journal of Neurology; Dec2015, Vol. 262 Issue 12, p2684-2690, 7p, 1 Diagram, 1 Chart
Publication Year :
2015

Abstract

KIF1A gene encodes the kinesin 1a protein, an axonal motor protein working in cargo transport along neurites. Variants in KIF1A were identified in different forms of neurodegenerative diseases with dominant and recessive inheritance. Homozygous recessive mutations were found in the hereditary sensory and autonomic neuropathy type 2, HSAN2 and in a recessive subtype of hereditary spastic paraparesis, SPG30. De novo heterozygous dominant variants were found both in a dominant form of SPG30 (AD-SPG30) with one single family reported and in patients with different forms of progressive neurodegenerative diseases. We report the results of a genetic screening of 192 HSP patients, with the identification of four heterozygous variants in KIF1A in four cases, two of whom with family history for the disease. Three of the four variants fall within the motor domain, a frequent target for variants related to the AD-SPG30 subtype. The fourth variant falls downstream the motor domain in a region lacking any functional domain. The KIF1A-related patients show clinical pictures overlapping the known AD-SPG30 phenotype including pure and complicated forms with few differences. Of note, one of the families, originating from the Sicily island, carries the same variant p.S69L detected in the first AD-SPG30 family of Finnish origin reported; differently from the first one, the latter family shows a wide intra-familial phenotype variability. Overall, these data reveal a very low frequency of the AD-SPG30 subtype while confirming the presence of amino acid residues in the motor domain representing preferential targets for mutations, thereby supporting their functional relevance in kinesin 1a activity. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03405354
Volume :
262
Issue :
12
Database :
Complementary Index
Journal :
Journal of Neurology
Publication Type :
Academic Journal
Accession number :
111115353
Full Text :
https://doi.org/10.1007/s00415-015-7899-9