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Neuronal cholesterol metabolism increases dendritic outgrowth and synaptic markers via a concerted action of GGTase-I and Trk

Cholesterol 24-hydroxylase (CYP46A1) is responsible for brain cholesterol elimination and therefore plays a crucial role in the control of brain cholesterol homeostasis. Altered CYP46A1 expression has been associated with several neurodegenerative diseases and changes in cognition. Since CYP46A1 act...

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Autores principales: Moutinho, Miguel, Nunes, Maria João, Correia, Jorge C., Gama, Maria João, Castro-Caldas, Margarida, Cedazo-Minguez, Angel, Rodrigues, Cecília M. P., Björkhem, Ingemar, Ruas, Jorge L, Rodrigues, Elsa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4974659/
https://www.ncbi.nlm.nih.gov/pubmed/27491694
http://dx.doi.org/10.1038/srep30928
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author Moutinho, Miguel
Nunes, Maria João
Correia, Jorge C.
Gama, Maria João
Castro-Caldas, Margarida
Cedazo-Minguez, Angel
Rodrigues, Cecília M. P.
Björkhem, Ingemar
Ruas, Jorge L
Rodrigues, Elsa
author_facet Moutinho, Miguel
Nunes, Maria João
Correia, Jorge C.
Gama, Maria João
Castro-Caldas, Margarida
Cedazo-Minguez, Angel
Rodrigues, Cecília M. P.
Björkhem, Ingemar
Ruas, Jorge L
Rodrigues, Elsa
author_sort Moutinho, Miguel
collection PubMed
description Cholesterol 24-hydroxylase (CYP46A1) is responsible for brain cholesterol elimination and therefore plays a crucial role in the control of brain cholesterol homeostasis. Altered CYP46A1 expression has been associated with several neurodegenerative diseases and changes in cognition. Since CYP46A1 activates small guanosine triphosphate-binding proteins (sGTPases), we hypothesized that CYP46A1 might be affecting neuronal development and function by activating tropomyosin-related kinase (Trk) receptors and promoting geranylgeranyl transferase-I (GGTase-I) prenylation activity. Our results show that CYP46A1 triggers an increase in neuronal dendritic outgrowth and dendritic protrusion density, and elicits an increase of synaptic proteins in the crude synaptosomal fraction. Strikingly, all of these effects are abolished by pharmacological inhibition of GGTase-I activity. Furthermore, CYP46A1 increases Trk phosphorylation, its interaction with GGTase-I, and the activity of GGTase-I, which is crucial for the enhanced dendritic outgrowth. Cholesterol supplementation studies indicate that cholesterol reduction by CYP46A1 is the necessary trigger for these effects. These results were confirmed in vivo, with a significant increase of p-Trk, pre- and postsynaptic proteins, Rac1, and decreased cholesterol levels, in crude synaptosomal fractions prepared from CYP46A1 transgenic mouse cortex. This work describes the molecular mechanisms by which neuronal cholesterol metabolism effectively modulates neuronal outgrowth and synaptic markers.
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spelling pubmed-49746592017-01-17 Neuronal cholesterol metabolism increases dendritic outgrowth and synaptic markers via a concerted action of GGTase-I and Trk Moutinho, Miguel Nunes, Maria João Correia, Jorge C. Gama, Maria João Castro-Caldas, Margarida Cedazo-Minguez, Angel Rodrigues, Cecília M. P. Björkhem, Ingemar Ruas, Jorge L Rodrigues, Elsa Sci Rep Article Cholesterol 24-hydroxylase (CYP46A1) is responsible for brain cholesterol elimination and therefore plays a crucial role in the control of brain cholesterol homeostasis. Altered CYP46A1 expression has been associated with several neurodegenerative diseases and changes in cognition. Since CYP46A1 activates small guanosine triphosphate-binding proteins (sGTPases), we hypothesized that CYP46A1 might be affecting neuronal development and function by activating tropomyosin-related kinase (Trk) receptors and promoting geranylgeranyl transferase-I (GGTase-I) prenylation activity. Our results show that CYP46A1 triggers an increase in neuronal dendritic outgrowth and dendritic protrusion density, and elicits an increase of synaptic proteins in the crude synaptosomal fraction. Strikingly, all of these effects are abolished by pharmacological inhibition of GGTase-I activity. Furthermore, CYP46A1 increases Trk phosphorylation, its interaction with GGTase-I, and the activity of GGTase-I, which is crucial for the enhanced dendritic outgrowth. Cholesterol supplementation studies indicate that cholesterol reduction by CYP46A1 is the necessary trigger for these effects. These results were confirmed in vivo, with a significant increase of p-Trk, pre- and postsynaptic proteins, Rac1, and decreased cholesterol levels, in crude synaptosomal fractions prepared from CYP46A1 transgenic mouse cortex. This work describes the molecular mechanisms by which neuronal cholesterol metabolism effectively modulates neuronal outgrowth and synaptic markers. Nature Publishing Group 2016-08-05 /pmc/articles/PMC4974659/ /pubmed/27491694 http://dx.doi.org/10.1038/srep30928 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Moutinho, Miguel
Nunes, Maria João
Correia, Jorge C.
Gama, Maria João
Castro-Caldas, Margarida
Cedazo-Minguez, Angel
Rodrigues, Cecília M. P.
Björkhem, Ingemar
Ruas, Jorge L
Rodrigues, Elsa
Neuronal cholesterol metabolism increases dendritic outgrowth and synaptic markers via a concerted action of GGTase-I and Trk
title Neuronal cholesterol metabolism increases dendritic outgrowth and synaptic markers via a concerted action of GGTase-I and Trk
title_full Neuronal cholesterol metabolism increases dendritic outgrowth and synaptic markers via a concerted action of GGTase-I and Trk
title_fullStr Neuronal cholesterol metabolism increases dendritic outgrowth and synaptic markers via a concerted action of GGTase-I and Trk
title_full_unstemmed Neuronal cholesterol metabolism increases dendritic outgrowth and synaptic markers via a concerted action of GGTase-I and Trk
title_short Neuronal cholesterol metabolism increases dendritic outgrowth and synaptic markers via a concerted action of GGTase-I and Trk
title_sort neuronal cholesterol metabolism increases dendritic outgrowth and synaptic markers via a concerted action of ggtase-i and trk
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4974659/
https://www.ncbi.nlm.nih.gov/pubmed/27491694
http://dx.doi.org/10.1038/srep30928
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