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Sprouty2 and ‐4 hypomorphism promotes neuronal survival and astrocytosis in a mouse model of kainic acid induced neuronal damage

Sprouty (Spry) proteins play a key role as negative feedback inhibitors of the Ras/Raf/MAPK/ERK pathway downstream of various receptor tyrosine kinases. Among the four Sprouty isoforms, Spry2 and Spry4 are expressed in the hippocampus. In this study, possible effects of Spry2 and Spry4 hypomorphism...

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Autores principales: Thongrong, Sitthisak, Hausott, Barbara, Marvaldi, Letizia, Agostinho, Alexandra S., Zangrandi, Luca, Burtscher, Johannes, Fogli, Barbara, Schwarzer, Christoph, Klimaschewski, Lars
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4949526/
https://www.ncbi.nlm.nih.gov/pubmed/26540287
http://dx.doi.org/10.1002/hipo.22549
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author Thongrong, Sitthisak
Hausott, Barbara
Marvaldi, Letizia
Agostinho, Alexandra S.
Zangrandi, Luca
Burtscher, Johannes
Fogli, Barbara
Schwarzer, Christoph
Klimaschewski, Lars
author_facet Thongrong, Sitthisak
Hausott, Barbara
Marvaldi, Letizia
Agostinho, Alexandra S.
Zangrandi, Luca
Burtscher, Johannes
Fogli, Barbara
Schwarzer, Christoph
Klimaschewski, Lars
author_sort Thongrong, Sitthisak
collection PubMed
description Sprouty (Spry) proteins play a key role as negative feedback inhibitors of the Ras/Raf/MAPK/ERK pathway downstream of various receptor tyrosine kinases. Among the four Sprouty isoforms, Spry2 and Spry4 are expressed in the hippocampus. In this study, possible effects of Spry2 and Spry4 hypomorphism on neurodegeneration and seizure thresholds in a mouse model of epileptogenesis was analyzed. The Spry2/4 hypomorphs exhibited stronger ERK activation which was limited to the CA3 pyramidal cell layer and to the hilar region. The seizure threshold of Spry2/4(+/−) mice was significantly reduced at naive state but no difference to wildtype mice was observed 1 month following KA treatment. Histomorphological analysis revealed that dentate granule cell dispersion (GCD) was diminished in Spry2/4(+/−) mice in the subchronic phase after KA injection. Neuronal degeneration was reduced in CA1 and CA3 principal neuron layers as well as in scattered neurons of the contralateral CA1 and hilar regions. Moreover, Spry2/4 reduction resulted in enhanced survival of somatostatin and neuropeptide Y expressing interneurons. GFAP staining intensity and number of reactive astrocytes markedly increased in lesioned areas of Spry2/4(+/−) mice as compared with wildtype mice. Taken together, although the seizure threshold is reduced in naive Spry2/4(+/−) mice, neurodegeneration and GCD is mitigated following KA induced hippocampal lesions, identifying Spry proteins as possible pharmacological targets in brain injuries resulting in neurodegeneration. The present data are consistent with the established functions of the ERK pathway in astrocyte proliferation as well as protection from neuronal cell death and suggest a novel role of Spry proteins in the migration of differentiated neurons. © 2015 The Authors Hippocampus Published by Wiley Periodicals, Inc.
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spelling pubmed-49495262016-07-28 Sprouty2 and ‐4 hypomorphism promotes neuronal survival and astrocytosis in a mouse model of kainic acid induced neuronal damage Thongrong, Sitthisak Hausott, Barbara Marvaldi, Letizia Agostinho, Alexandra S. Zangrandi, Luca Burtscher, Johannes Fogli, Barbara Schwarzer, Christoph Klimaschewski, Lars Hippocampus Research Articles Sprouty (Spry) proteins play a key role as negative feedback inhibitors of the Ras/Raf/MAPK/ERK pathway downstream of various receptor tyrosine kinases. Among the four Sprouty isoforms, Spry2 and Spry4 are expressed in the hippocampus. In this study, possible effects of Spry2 and Spry4 hypomorphism on neurodegeneration and seizure thresholds in a mouse model of epileptogenesis was analyzed. The Spry2/4 hypomorphs exhibited stronger ERK activation which was limited to the CA3 pyramidal cell layer and to the hilar region. The seizure threshold of Spry2/4(+/−) mice was significantly reduced at naive state but no difference to wildtype mice was observed 1 month following KA treatment. Histomorphological analysis revealed that dentate granule cell dispersion (GCD) was diminished in Spry2/4(+/−) mice in the subchronic phase after KA injection. Neuronal degeneration was reduced in CA1 and CA3 principal neuron layers as well as in scattered neurons of the contralateral CA1 and hilar regions. Moreover, Spry2/4 reduction resulted in enhanced survival of somatostatin and neuropeptide Y expressing interneurons. GFAP staining intensity and number of reactive astrocytes markedly increased in lesioned areas of Spry2/4(+/−) mice as compared with wildtype mice. Taken together, although the seizure threshold is reduced in naive Spry2/4(+/−) mice, neurodegeneration and GCD is mitigated following KA induced hippocampal lesions, identifying Spry proteins as possible pharmacological targets in brain injuries resulting in neurodegeneration. The present data are consistent with the established functions of the ERK pathway in astrocyte proliferation as well as protection from neuronal cell death and suggest a novel role of Spry proteins in the migration of differentiated neurons. © 2015 The Authors Hippocampus Published by Wiley Periodicals, Inc. John Wiley and Sons Inc. 2015-11-27 2016-05 /pmc/articles/PMC4949526/ /pubmed/26540287 http://dx.doi.org/10.1002/hipo.22549 Text en © 2015 The Authors Hippocampus Published by Wiley Periodicals, Inc. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Thongrong, Sitthisak
Hausott, Barbara
Marvaldi, Letizia
Agostinho, Alexandra S.
Zangrandi, Luca
Burtscher, Johannes
Fogli, Barbara
Schwarzer, Christoph
Klimaschewski, Lars
Sprouty2 and ‐4 hypomorphism promotes neuronal survival and astrocytosis in a mouse model of kainic acid induced neuronal damage
title Sprouty2 and ‐4 hypomorphism promotes neuronal survival and astrocytosis in a mouse model of kainic acid induced neuronal damage
title_full Sprouty2 and ‐4 hypomorphism promotes neuronal survival and astrocytosis in a mouse model of kainic acid induced neuronal damage
title_fullStr Sprouty2 and ‐4 hypomorphism promotes neuronal survival and astrocytosis in a mouse model of kainic acid induced neuronal damage
title_full_unstemmed Sprouty2 and ‐4 hypomorphism promotes neuronal survival and astrocytosis in a mouse model of kainic acid induced neuronal damage
title_short Sprouty2 and ‐4 hypomorphism promotes neuronal survival and astrocytosis in a mouse model of kainic acid induced neuronal damage
title_sort sprouty2 and ‐4 hypomorphism promotes neuronal survival and astrocytosis in a mouse model of kainic acid induced neuronal damage
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4949526/
https://www.ncbi.nlm.nih.gov/pubmed/26540287
http://dx.doi.org/10.1002/hipo.22549
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