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Exome sequencing links corticospinal motor neuron disease to common neurodegenerative disorders.

Authors :
Novarino G
Fenstermaker AG
Zaki MS
Hofree M
Silhavy JL
Heiberg AD
Abdellateef M
Rosti B
Scott E
Mansour L
Masri A
Kayserili H
Al-Aama JY
Abdel-Salam GMH
Karminejad A
Kara M
Kara B
Bozorgmehri B
Ben-Omran T
Mojahedi F
El Din Mahmoud IG
Bouslam N
Bouhouche A
Benomar A
Hanein S
Raymond L
Forlani S
Mascaro M
Selim L
Shehata N
Al-Allawi N
Bindu PS
Azam M
Gunel M
Caglayan A
Bilguvar K
Tolun A
Issa MY
Schroth J
Spencer EG
Rosti RO
Akizu N
Vaux KK
Johansen A
Koh AA
Megahed H
Durr A
Brice A
Stevanin G
Gabriel SB
Ideker T
Gleeson JG
Source :
Science (New York, N.Y.) [Science] 2014 Jan 31; Vol. 343 (6170), pp. 506-511.
Publication Year :
2014

Abstract

Hereditary spastic paraplegias (HSPs) are neurodegenerative motor neuron diseases characterized by progressive age-dependent loss of corticospinal motor tract function. Although the genetic basis is partly understood, only a fraction of cases can receive a genetic diagnosis, and a global view of HSP is lacking. By using whole-exome sequencing in combination with network analysis, we identified 18 previously unknown putative HSP genes and validated nearly all of these genes functionally or genetically. The pathways highlighted by these mutations link HSP to cellular transport, nucleotide metabolism, and synapse and axon development. Network analysis revealed a host of further candidate genes, of which three were mutated in our cohort. Our analysis links HSP to other neurodegenerative disorders and can facilitate gene discovery and mechanistic understanding of disease.

Details

Language :
English
ISSN :
1095-9203
Volume :
343
Issue :
6170
Database :
MEDLINE
Journal :
Science (New York, N.Y.)
Publication Type :
Academic Journal
Accession number :
24482476
Full Text :
https://doi.org/10.1126/science.1247363