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Query: UMLS:C0002736 (
amyotrophic lateral sclerosis
)
19,048
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
In the present study we analyze the molecular mechanisms underlying motor neuron degeneration in familial
amyotrophic lateral sclerosis
(FALS). For this, we used a transgenic mouse model expressing the Cu/Zn superoxide dismutase (SOD1) gene with a Gly(86) to Arg (G86R) mutation equivalent to that found in a subset of human FALS. Using an optimized suppression subtractive hybridization method, a cDNA specifically up-regulated during the asymptomatic phase in the lumbar spinal cord of G86R mice was identified by sequence analysis as the KIF3-associated protein (
KAP3
), a regulator of fast axonal transport. RT-PCR analysis revealed that
KAP3
induction was an early event arising long before axonal degeneration. Immunohistochemical studies further revealed that
KAP3
protein predominantly accumulates in large motor neurons of the ventral spinal cord. We further demonstrated that
KAP3
up-regulation occurs independent of any change in the other components of the kinesin II complex. However, since the ubiquitous KIF1A motor is up-regulated, our results show an early and complex rearrangement of the fast axonal transport machinery in the course of FALS pathology.
...
PMID:Differential screening of mutated SOD1 transgenic mice reveals early up-regulation of a fast axonal transport component in spinal cord motor neurons. 1096
Mutations in the superoxide dismutase 1 (sod1) gene cause familial
amyotrophic lateral sclerosis
(FALS), likely due to the toxic properties of misfolded mutant SOD1 protein. Here we demonstrated that, starting from the pre-onset stage of FALS, misfolded SOD1 species associates specifically with
kinesin-associated protein 3
(
KAP3
) in the ventral white matter of SOD1(G93A)-transgenic mouse spinal cord.
KAP3
is a kinesin-2 subunit responsible for binding to cargos including choline acetyltransferase (ChAT). Motor axons in SOD1(G93A)-Tg mice also showed a reduction in ChAT transport from the pre-onset stage. By employing a novel FALS modeling system using NG108-15 cells, we showed that microtubule-dependent release of acetylcholine was significantly impaired by misfolded SOD1 species. Furthermore, such impairment was able to be normalized by
KAP3
overexpression.
KAP3
was incorporated into SOD1 aggregates in human FALS cases as well. These results suggest that
KAP3
sequestration by misfolded SOD1 species and the resultant inhibition of ChAT transport play a role in the dysfunction of
ALS
.
...
PMID:Mutant SOD1 impairs axonal transport of choline acetyltransferase and acetylcholine release by sequestering KAP3. 1908 26