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Tytuł pozycji:

Spatacsin and spastizin act in the same pathway required for proper spinal motor neuron axon outgrowth in zebrafish.

Tytuł:
Spatacsin and spastizin act in the same pathway required for proper spinal motor neuron axon outgrowth in zebrafish.
Autorzy:
Martin E; INSERM, U975, 75013 Paris, France.
Yanicostas C
Rastetter A
Alavi Naini SM
Maouedj A
Kabashi E
Rivaud-Péchoux S
Brice A
Stevanin G
Soussi-Yanicostas N
Źródło:
Neurobiology of disease [Neurobiol Dis] 2012 Dec; Vol. 48 (3), pp. 299-308. Date of Electronic Publication: 2012 Jul 16.
Typ publikacji:
Journal Article; Research Support, Non-U.S. Gov't
Język:
English
Imprint Name(s):
Publication: San Diego, CA : Academic Press
Original Publication: Oxford : Blackwell Science, c1994-
MeSH Terms:
Axons/*metabolism
Motor Neurons/*metabolism
Neurogenesis/*physiology
Zebrafish/*embryology
Zebrafish Proteins/*metabolism
Animals ; Carrier Proteins/metabolism ; Embryo, Nonmammalian ; Immunohistochemistry ; In Situ Nick-End Labeling ; Proteins/metabolism ; Reverse Transcriptase Polymerase Chain Reaction ; Sequence Homology, Amino Acid ; Zebrafish/metabolism
Substance Nomenclature:
0 (Carrier Proteins)
0 (Proteins)
0 (SPG11 protein, human)
0 (ZFYVE26 protein, human)
0 (Zebrafish Proteins)
Entry Date(s):
Date Created: 20120718 Date Completed: 20130430 Latest Revision: 20210201
Update Code:
20240104
DOI:
10.1016/j.nbd.2012.07.003
PMID:
22801083
Czasopismo naukowe
Hereditary spastic paraplegias (HSPs) are rare neurological conditions caused by degeneration of the long axons of the cerebrospinal tracts, leading to locomotor impairment and additional neurological symptoms. There are more than 40 different causative genes, 24 of which have been identified, including SPG11 and SPG15 mutated in complex clinical forms. Since the vast majority of the causative mutations lead to loss of function of the corresponding proteins, we made use of morpholino-oligonucleotide (MO)-mediated gene knock-down to generate zebrafish models of both SPG11 and SPG15 and determine how invalidation of the causative genes (zspg11 and zspg15) during development might contribute to the disease. Micro-injection of MOs targeting each gene caused locomotor impairment and abnormal branching of spinal cord motor neurons at the neuromuscular junction. More severe phenotypes with abnormal tail developments were also seen. Moreover, partial depletion of both proteins at sub-phenotypic levels resulted in the same phenotypes, suggesting for the first time, in vivo, a genetic interaction between these genes. In conclusion, the zebrafish orthologues of the SPG11 and SPG15 genes are important for proper development of the axons of spinal motor neurons and likely act in a common pathway to promote their proper path finding towards the neuromuscular junction.
(Copyright © 2012 Elsevier Inc. All rights reserved.)

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