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Meridianins and Lignarenone B as Potential GSK3β Inhibitors and Inductors of Structural Neuronal Plasticity

Glycogen Synthase Kinase 3 (GSK3) is an essential protein, with a relevant role in many diseases such as diabetes, cancer and neurodegenerative disorders. Particularly, the isoform GSK3β is related to pathologies such as Alzheimer’s disease (AD). This enzyme constitutes a very interesting target for...

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Autores principales: Llorach-Pares, Laura, Rodriguez-Urgelles, Ened, Nonell-Canals, Alfons, Alberch, Jordi, Avila, Conxita, Sanchez-Martinez, Melchor, Giralt, Albert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7226462/
https://www.ncbi.nlm.nih.gov/pubmed/32326204
http://dx.doi.org/10.3390/biom10040639
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author Llorach-Pares, Laura
Rodriguez-Urgelles, Ened
Nonell-Canals, Alfons
Alberch, Jordi
Avila, Conxita
Sanchez-Martinez, Melchor
Giralt, Albert
author_facet Llorach-Pares, Laura
Rodriguez-Urgelles, Ened
Nonell-Canals, Alfons
Alberch, Jordi
Avila, Conxita
Sanchez-Martinez, Melchor
Giralt, Albert
author_sort Llorach-Pares, Laura
collection PubMed
description Glycogen Synthase Kinase 3 (GSK3) is an essential protein, with a relevant role in many diseases such as diabetes, cancer and neurodegenerative disorders. Particularly, the isoform GSK3β is related to pathologies such as Alzheimer’s disease (AD). This enzyme constitutes a very interesting target for the discovery and/or design of new therapeutic agents against AD due to its relation to the hyperphosphorylation of the microtubule-associated protein tau (MAPT), and therefore, its contribution to neurofibrillary tangles (NFT) formation. An in silico target profiling study identified two marine molecular families, the indole alkaloids meridianins from the tunicate genus Aplidium, and lignarenones, the secondary metabolites of the shelled cephalaspidean mollusc Scaphander lignarius, as possible GSK3β inhibitors. The analysis of the surface of GSK3β, aimed to find possible binding regions, and the subsequent in silico binding studies revealed that both marine molecular families can act over the ATP and/or substrate binding regions. The predicted inhibitory potential of the molecules from these two chemical families was experimentally validated in vitro by showing a ~50% of increased Ser9 phosphorylation levels of the GSK3β protein. Furthermore, we determined that molecules from both molecular families potentiate structural neuronal plasticity in vitro. These results allow us to suggest that meridianins and lignarenone B could be used as possible therapeutic candidates for the treatment of GSK3β involved pathologies, such as AD.
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spelling pubmed-72264622020-05-18 Meridianins and Lignarenone B as Potential GSK3β Inhibitors and Inductors of Structural Neuronal Plasticity Llorach-Pares, Laura Rodriguez-Urgelles, Ened Nonell-Canals, Alfons Alberch, Jordi Avila, Conxita Sanchez-Martinez, Melchor Giralt, Albert Biomolecules Article Glycogen Synthase Kinase 3 (GSK3) is an essential protein, with a relevant role in many diseases such as diabetes, cancer and neurodegenerative disorders. Particularly, the isoform GSK3β is related to pathologies such as Alzheimer’s disease (AD). This enzyme constitutes a very interesting target for the discovery and/or design of new therapeutic agents against AD due to its relation to the hyperphosphorylation of the microtubule-associated protein tau (MAPT), and therefore, its contribution to neurofibrillary tangles (NFT) formation. An in silico target profiling study identified two marine molecular families, the indole alkaloids meridianins from the tunicate genus Aplidium, and lignarenones, the secondary metabolites of the shelled cephalaspidean mollusc Scaphander lignarius, as possible GSK3β inhibitors. The analysis of the surface of GSK3β, aimed to find possible binding regions, and the subsequent in silico binding studies revealed that both marine molecular families can act over the ATP and/or substrate binding regions. The predicted inhibitory potential of the molecules from these two chemical families was experimentally validated in vitro by showing a ~50% of increased Ser9 phosphorylation levels of the GSK3β protein. Furthermore, we determined that molecules from both molecular families potentiate structural neuronal plasticity in vitro. These results allow us to suggest that meridianins and lignarenone B could be used as possible therapeutic candidates for the treatment of GSK3β involved pathologies, such as AD. MDPI 2020-04-21 /pmc/articles/PMC7226462/ /pubmed/32326204 http://dx.doi.org/10.3390/biom10040639 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Llorach-Pares, Laura
Rodriguez-Urgelles, Ened
Nonell-Canals, Alfons
Alberch, Jordi
Avila, Conxita
Sanchez-Martinez, Melchor
Giralt, Albert
Meridianins and Lignarenone B as Potential GSK3β Inhibitors and Inductors of Structural Neuronal Plasticity
title Meridianins and Lignarenone B as Potential GSK3β Inhibitors and Inductors of Structural Neuronal Plasticity
title_full Meridianins and Lignarenone B as Potential GSK3β Inhibitors and Inductors of Structural Neuronal Plasticity
title_fullStr Meridianins and Lignarenone B as Potential GSK3β Inhibitors and Inductors of Structural Neuronal Plasticity
title_full_unstemmed Meridianins and Lignarenone B as Potential GSK3β Inhibitors and Inductors of Structural Neuronal Plasticity
title_short Meridianins and Lignarenone B as Potential GSK3β Inhibitors and Inductors of Structural Neuronal Plasticity
title_sort meridianins and lignarenone b as potential gsk3β inhibitors and inductors of structural neuronal plasticity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7226462/
https://www.ncbi.nlm.nih.gov/pubmed/32326204
http://dx.doi.org/10.3390/biom10040639
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