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  4. Spinal muscular atrophy pathogenic mutations impair the axonogenic properties of axonal-survival of motor neuron
 
research article

Spinal muscular atrophy pathogenic mutations impair the axonogenic properties of axonal-survival of motor neuron

Locatelli, Denise
•
d'Errico, Paolo
•
Capra, Silvia
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2012
Journal of Neurochemistry (JNC)

The axonal survival of motor neuron (a-SMN) protein is a truncated isoform of SMN1, the spinal muscular atrophy (SMA) disease gene. a-SMN is selectively localized in axons and endowed with remarkable axonogenic properties. At present, the role of a-SMN in SMA is unknown. As a first step to verify a link between a-SMN and SMA, we investigated by means of over-expression experiments in neuroblastoma-spinal cord hybrid cell line (NSC34) whether SMA pathogenic mutations located in the N-terminal part of the protein affected a-SMN function. We demonstrated here that either SMN1 missense mutations or small intragenic re-arrangements located in the Tudor domain consistently altered the a-SMN capability of inducing axonal elongation in vitro. Mutated human a-SMN proteins determined in almost all NSC34 motor neurons the growth of short axons with prominent morphologic abnormalities. Our data indicate that the Tudor domain is critical in dictating a-SMN function possibly because it is an association domain for proteins involved in axon growth. They also indicate that Tudor domain mutations are functionally relevant not only for FL-SMN but also for a-SMN, raising the possibility that also a-SMN loss of function may contribute to the pathogenic steps leading to SMA.

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Type
research article
DOI
10.1111/j.1471-4159.2012.07689.x
Web of Science ID

WOS:000302615700014

Author(s)
Locatelli, Denise
d'Errico, Paolo
Capra, Silvia
Finardi, Adele
Colciaghi, Francesca
Setola, Veronica  
Terao, Mineko
Garattini, Enrico
Battaglia, Giorgio
Date Issued

2012

Publisher

Wiley-Blackwell

Published in
Journal of Neurochemistry (JNC)
Volume

121

Start page

465

End page

474

Subjects

axon growth

•

axon swellings

•

cytoskeletal abnormalities

•

motor neuron

•

spinal muscular atrophy

•

Tudor domain

•

Determining Gene-Product

•

Disease Protein Smn

•

Messenger-Rna

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Tudor Domain

•

Growth Cones

•

Mouse Model

•

Defects

•

Localization

•

Deletions

•

Hud

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
LEN  
Available on Infoscience
May 11, 2012
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/80245
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