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Knockdown of the Drosophila Fused in Sarcoma (FUS) Homologue Causes Deficient Locomotive Behavior and Shortening of Motoneuron Terminal Branches

Mutations in the fused in sarcoma/translated in liposarcoma gene (FUS/TLS, FUS) have been identified in sporadic and familial forms of amyotrophic lateral sclerosis (ALS). FUS is an RNA-binding protein that is normally localized in the nucleus, but is mislocalized to the cytoplasm in ALS, and compri...

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Autores principales: Sasayama, Hiroshi, Shimamura, Mai, Tokuda, Takahiko, Azuma, Yumiko, Yoshida, Tomokatsu, Mizuno, Toshiki, Nakagawa, Masanori, Fujikake, Nobuhiro, Nagai, Yoshitaka, Yamaguchi, Masamitsu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3378546/
https://www.ncbi.nlm.nih.gov/pubmed/22724023
http://dx.doi.org/10.1371/journal.pone.0039483
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author Sasayama, Hiroshi
Shimamura, Mai
Tokuda, Takahiko
Azuma, Yumiko
Yoshida, Tomokatsu
Mizuno, Toshiki
Nakagawa, Masanori
Fujikake, Nobuhiro
Nagai, Yoshitaka
Yamaguchi, Masamitsu
author_facet Sasayama, Hiroshi
Shimamura, Mai
Tokuda, Takahiko
Azuma, Yumiko
Yoshida, Tomokatsu
Mizuno, Toshiki
Nakagawa, Masanori
Fujikake, Nobuhiro
Nagai, Yoshitaka
Yamaguchi, Masamitsu
author_sort Sasayama, Hiroshi
collection PubMed
description Mutations in the fused in sarcoma/translated in liposarcoma gene (FUS/TLS, FUS) have been identified in sporadic and familial forms of amyotrophic lateral sclerosis (ALS). FUS is an RNA-binding protein that is normally localized in the nucleus, but is mislocalized to the cytoplasm in ALS, and comprises cytoplasmic inclusions in ALS-affected areas. However, it is still unknown whether the neurodegeneration that occurs in ALS is caused by the loss of FUS nuclear function, or by the gain of toxic function due to cytoplasmic FUS aggregation. Cabeza (Caz) is a Drosophila orthologue of human FUS. Here, we generated Drosophila models with Caz knockdown, and investigated their phenotypes. In wild-type Drosophila, Caz was strongly expressed in the central nervous system of larvae and adults. Caz did not colocalize with a presynaptic marker, suggesting that Caz physiologically functions in neuronal cell bodies and/or their axons. Fly models with neuron-specific Caz knockdown exhibited reduced climbing ability in adulthood and anatomical defects in presynaptic terminals of motoneurons in third instar larvae. Our results demonstrated that decreased expression of Drosophila Caz is sufficient to cause degeneration of motoneurons and locomotive disability in the absence of abnormal cytoplasmic Caz aggregates, suggesting that the pathogenic mechanism underlying FUS-related ALS should be ascribed more to the loss of physiological FUS functions in the nucleus than to the toxicity of cytoplasmic FUS aggregates. Since the Caz-knockdown Drosophila model we presented recapitulates key features of human ALS, it would be a suitable animal model for the screening of genes and chemicals that might modify the pathogenic processes that lead to the degeneration of motoneurons in ALS.
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spelling pubmed-33785462012-06-21 Knockdown of the Drosophila Fused in Sarcoma (FUS) Homologue Causes Deficient Locomotive Behavior and Shortening of Motoneuron Terminal Branches Sasayama, Hiroshi Shimamura, Mai Tokuda, Takahiko Azuma, Yumiko Yoshida, Tomokatsu Mizuno, Toshiki Nakagawa, Masanori Fujikake, Nobuhiro Nagai, Yoshitaka Yamaguchi, Masamitsu PLoS One Research Article Mutations in the fused in sarcoma/translated in liposarcoma gene (FUS/TLS, FUS) have been identified in sporadic and familial forms of amyotrophic lateral sclerosis (ALS). FUS is an RNA-binding protein that is normally localized in the nucleus, but is mislocalized to the cytoplasm in ALS, and comprises cytoplasmic inclusions in ALS-affected areas. However, it is still unknown whether the neurodegeneration that occurs in ALS is caused by the loss of FUS nuclear function, or by the gain of toxic function due to cytoplasmic FUS aggregation. Cabeza (Caz) is a Drosophila orthologue of human FUS. Here, we generated Drosophila models with Caz knockdown, and investigated their phenotypes. In wild-type Drosophila, Caz was strongly expressed in the central nervous system of larvae and adults. Caz did not colocalize with a presynaptic marker, suggesting that Caz physiologically functions in neuronal cell bodies and/or their axons. Fly models with neuron-specific Caz knockdown exhibited reduced climbing ability in adulthood and anatomical defects in presynaptic terminals of motoneurons in third instar larvae. Our results demonstrated that decreased expression of Drosophila Caz is sufficient to cause degeneration of motoneurons and locomotive disability in the absence of abnormal cytoplasmic Caz aggregates, suggesting that the pathogenic mechanism underlying FUS-related ALS should be ascribed more to the loss of physiological FUS functions in the nucleus than to the toxicity of cytoplasmic FUS aggregates. Since the Caz-knockdown Drosophila model we presented recapitulates key features of human ALS, it would be a suitable animal model for the screening of genes and chemicals that might modify the pathogenic processes that lead to the degeneration of motoneurons in ALS. Public Library of Science 2012-06-19 /pmc/articles/PMC3378546/ /pubmed/22724023 http://dx.doi.org/10.1371/journal.pone.0039483 Text en Sasayama et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sasayama, Hiroshi
Shimamura, Mai
Tokuda, Takahiko
Azuma, Yumiko
Yoshida, Tomokatsu
Mizuno, Toshiki
Nakagawa, Masanori
Fujikake, Nobuhiro
Nagai, Yoshitaka
Yamaguchi, Masamitsu
Knockdown of the Drosophila Fused in Sarcoma (FUS) Homologue Causes Deficient Locomotive Behavior and Shortening of Motoneuron Terminal Branches
title Knockdown of the Drosophila Fused in Sarcoma (FUS) Homologue Causes Deficient Locomotive Behavior and Shortening of Motoneuron Terminal Branches
title_full Knockdown of the Drosophila Fused in Sarcoma (FUS) Homologue Causes Deficient Locomotive Behavior and Shortening of Motoneuron Terminal Branches
title_fullStr Knockdown of the Drosophila Fused in Sarcoma (FUS) Homologue Causes Deficient Locomotive Behavior and Shortening of Motoneuron Terminal Branches
title_full_unstemmed Knockdown of the Drosophila Fused in Sarcoma (FUS) Homologue Causes Deficient Locomotive Behavior and Shortening of Motoneuron Terminal Branches
title_short Knockdown of the Drosophila Fused in Sarcoma (FUS) Homologue Causes Deficient Locomotive Behavior and Shortening of Motoneuron Terminal Branches
title_sort knockdown of the drosophila fused in sarcoma (fus) homologue causes deficient locomotive behavior and shortening of motoneuron terminal branches
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3378546/
https://www.ncbi.nlm.nih.gov/pubmed/22724023
http://dx.doi.org/10.1371/journal.pone.0039483
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