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Unraveling the Spatiotemporal Distribution of VPS13A in the Mouse Brain

Loss-of-function mutations in the human vacuolar protein sorting the 13 homolog A (VPS13A) gene cause Chorea-acanthocytosis (ChAc), with selective degeneration of the striatum as the main neuropathologic feature. Very little is known about the VPS13A expression in the brain. The main objective of th...

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Autores principales: García-García, Esther, Chaparro-Cabanillas, Nerea, Coll-Manzano, Albert, Carreras-Caballé, Maria, Giralt, Albert, Del Toro, Daniel, Alberch, Jordi, Masana, Mercè, Rodríguez, Manuel J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8657609/
https://www.ncbi.nlm.nih.gov/pubmed/34884823
http://dx.doi.org/10.3390/ijms222313018
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author García-García, Esther
Chaparro-Cabanillas, Nerea
Coll-Manzano, Albert
Carreras-Caballé, Maria
Giralt, Albert
Del Toro, Daniel
Alberch, Jordi
Masana, Mercè
Rodríguez, Manuel J.
author_facet García-García, Esther
Chaparro-Cabanillas, Nerea
Coll-Manzano, Albert
Carreras-Caballé, Maria
Giralt, Albert
Del Toro, Daniel
Alberch, Jordi
Masana, Mercè
Rodríguez, Manuel J.
author_sort García-García, Esther
collection PubMed
description Loss-of-function mutations in the human vacuolar protein sorting the 13 homolog A (VPS13A) gene cause Chorea-acanthocytosis (ChAc), with selective degeneration of the striatum as the main neuropathologic feature. Very little is known about the VPS13A expression in the brain. The main objective of this work was to assess, for the first time, the spatiotemporal distribution of VPS13A in the mouse brain. We found VPS13A expression present in neurons already in the embryonic stage, with stable levels until adulthood. VPS13A mRNA and protein distributions were similar in the adult mouse brain. We found a widespread VPS13A distribution, with the strongest expression profiles in the pons, hippocampus, and cerebellum. Interestingly, expression was weak in the basal ganglia. VPS13A staining was positive in glutamatergic, GABAergic, and cholinergic neurons, but rarely in glial cells. At the cellular level, VPS13A was mainly located in the soma and neurites, co-localizing with both the endoplasmic reticulum and mitochondria. However, it was not enriched in dendritic spines or the synaptosomal fraction of cortical neurons. In vivo pharmacological modulation of the glutamatergic, dopaminergic or cholinergic systems did not modulate VPS13A concentration in the hippocampus, cerebral cortex, or striatum. These results indicate that VPS13A has remarkable stability in neuronal cells. Understanding the distinct expression pattern of VPS13A can provide relevant information to unravel pathophysiological hallmarks of ChAc.
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spelling pubmed-86576092021-12-10 Unraveling the Spatiotemporal Distribution of VPS13A in the Mouse Brain García-García, Esther Chaparro-Cabanillas, Nerea Coll-Manzano, Albert Carreras-Caballé, Maria Giralt, Albert Del Toro, Daniel Alberch, Jordi Masana, Mercè Rodríguez, Manuel J. Int J Mol Sci Article Loss-of-function mutations in the human vacuolar protein sorting the 13 homolog A (VPS13A) gene cause Chorea-acanthocytosis (ChAc), with selective degeneration of the striatum as the main neuropathologic feature. Very little is known about the VPS13A expression in the brain. The main objective of this work was to assess, for the first time, the spatiotemporal distribution of VPS13A in the mouse brain. We found VPS13A expression present in neurons already in the embryonic stage, with stable levels until adulthood. VPS13A mRNA and protein distributions were similar in the adult mouse brain. We found a widespread VPS13A distribution, with the strongest expression profiles in the pons, hippocampus, and cerebellum. Interestingly, expression was weak in the basal ganglia. VPS13A staining was positive in glutamatergic, GABAergic, and cholinergic neurons, but rarely in glial cells. At the cellular level, VPS13A was mainly located in the soma and neurites, co-localizing with both the endoplasmic reticulum and mitochondria. However, it was not enriched in dendritic spines or the synaptosomal fraction of cortical neurons. In vivo pharmacological modulation of the glutamatergic, dopaminergic or cholinergic systems did not modulate VPS13A concentration in the hippocampus, cerebral cortex, or striatum. These results indicate that VPS13A has remarkable stability in neuronal cells. Understanding the distinct expression pattern of VPS13A can provide relevant information to unravel pathophysiological hallmarks of ChAc. MDPI 2021-12-01 /pmc/articles/PMC8657609/ /pubmed/34884823 http://dx.doi.org/10.3390/ijms222313018 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
García-García, Esther
Chaparro-Cabanillas, Nerea
Coll-Manzano, Albert
Carreras-Caballé, Maria
Giralt, Albert
Del Toro, Daniel
Alberch, Jordi
Masana, Mercè
Rodríguez, Manuel J.
Unraveling the Spatiotemporal Distribution of VPS13A in the Mouse Brain
title Unraveling the Spatiotemporal Distribution of VPS13A in the Mouse Brain
title_full Unraveling the Spatiotemporal Distribution of VPS13A in the Mouse Brain
title_fullStr Unraveling the Spatiotemporal Distribution of VPS13A in the Mouse Brain
title_full_unstemmed Unraveling the Spatiotemporal Distribution of VPS13A in the Mouse Brain
title_short Unraveling the Spatiotemporal Distribution of VPS13A in the Mouse Brain
title_sort unraveling the spatiotemporal distribution of vps13a in the mouse brain
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8657609/
https://www.ncbi.nlm.nih.gov/pubmed/34884823
http://dx.doi.org/10.3390/ijms222313018
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