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Reduced exploratory behavior in neuronal nucleoredoxin knockout mice

Nucleoredoxin is a thioredoxin-like redoxin that has been recognized as redox modulator of WNT signaling. Using a Yeast-2-Hybrid screen, we identified calcium calmodulin kinase 2a, Camk2a, as a prominent prey in a brain library. Camk2a is crucial for nitric oxide dependent processes of neuronal plas...

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Autores principales: Tran, Bao Ngoc, Valek, Lucie, Wilken-Schmitz, Annett, Fuhrmann, Dominik Christian, Namgaladze, Dimitry, Wittig, Ilka, Tegeder, Irmgard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8254043/
https://www.ncbi.nlm.nih.gov/pubmed/34198070
http://dx.doi.org/10.1016/j.redox.2021.102054
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author Tran, Bao Ngoc
Valek, Lucie
Wilken-Schmitz, Annett
Fuhrmann, Dominik Christian
Namgaladze, Dimitry
Wittig, Ilka
Tegeder, Irmgard
author_facet Tran, Bao Ngoc
Valek, Lucie
Wilken-Schmitz, Annett
Fuhrmann, Dominik Christian
Namgaladze, Dimitry
Wittig, Ilka
Tegeder, Irmgard
author_sort Tran, Bao Ngoc
collection PubMed
description Nucleoredoxin is a thioredoxin-like redoxin that has been recognized as redox modulator of WNT signaling. Using a Yeast-2-Hybrid screen, we identified calcium calmodulin kinase 2a, Camk2a, as a prominent prey in a brain library. Camk2a is crucial for nitric oxide dependent processes of neuronal plasticity of learning and memory. Therefore, the present study assessed functions of NXN in neuronal Nestin-NXN(-/-) deficient mice. The NXN-Camk2a interaction was confirmed by coimmunoprecipitation, and by colocalization in neuropil and dendritic spines. Functionally, Camk2a activity was reduced in NXN deficient neurons and restored with recombinant NXN. Proteomics revealed reduced oxidation in the hippocampus of Nestin-NXN(-/-) deficient mice, including Camk2a, further synaptic and mitochondrial proteins, and was associated with a reduction of mitochondrial respiration. Nestin-NXN(-/-) mice were healthy and behaved normally in behavioral tests of anxiety, activity and sociability. They had no cognitive deficits in touchscreen based learning & memory tasks, but omitted more trials showing a lower interest in the reward. They also engaged less in rewarding voluntary wheel running, and in exploratory behavior in IntelliCages. Accuracy was enhanced owing to the loss of exploration. The data suggested that NXN maintained the oxidative state of Camk2a and thereby its activity. In addition, it supported oxidation of other synaptic and mitochondrial proteins, and mitochondrial respiration. The loss of NXN-dependent pro-oxidative functions manifested in a loss of exploratory drive and reduced interest in reward in behaving mice.
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spelling pubmed-82540432021-07-12 Reduced exploratory behavior in neuronal nucleoredoxin knockout mice Tran, Bao Ngoc Valek, Lucie Wilken-Schmitz, Annett Fuhrmann, Dominik Christian Namgaladze, Dimitry Wittig, Ilka Tegeder, Irmgard Redox Biol Research Paper Nucleoredoxin is a thioredoxin-like redoxin that has been recognized as redox modulator of WNT signaling. Using a Yeast-2-Hybrid screen, we identified calcium calmodulin kinase 2a, Camk2a, as a prominent prey in a brain library. Camk2a is crucial for nitric oxide dependent processes of neuronal plasticity of learning and memory. Therefore, the present study assessed functions of NXN in neuronal Nestin-NXN(-/-) deficient mice. The NXN-Camk2a interaction was confirmed by coimmunoprecipitation, and by colocalization in neuropil and dendritic spines. Functionally, Camk2a activity was reduced in NXN deficient neurons and restored with recombinant NXN. Proteomics revealed reduced oxidation in the hippocampus of Nestin-NXN(-/-) deficient mice, including Camk2a, further synaptic and mitochondrial proteins, and was associated with a reduction of mitochondrial respiration. Nestin-NXN(-/-) mice were healthy and behaved normally in behavioral tests of anxiety, activity and sociability. They had no cognitive deficits in touchscreen based learning & memory tasks, but omitted more trials showing a lower interest in the reward. They also engaged less in rewarding voluntary wheel running, and in exploratory behavior in IntelliCages. Accuracy was enhanced owing to the loss of exploration. The data suggested that NXN maintained the oxidative state of Camk2a and thereby its activity. In addition, it supported oxidation of other synaptic and mitochondrial proteins, and mitochondrial respiration. The loss of NXN-dependent pro-oxidative functions manifested in a loss of exploratory drive and reduced interest in reward in behaving mice. Elsevier 2021-06-23 /pmc/articles/PMC8254043/ /pubmed/34198070 http://dx.doi.org/10.1016/j.redox.2021.102054 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
Tran, Bao Ngoc
Valek, Lucie
Wilken-Schmitz, Annett
Fuhrmann, Dominik Christian
Namgaladze, Dimitry
Wittig, Ilka
Tegeder, Irmgard
Reduced exploratory behavior in neuronal nucleoredoxin knockout mice
title Reduced exploratory behavior in neuronal nucleoredoxin knockout mice
title_full Reduced exploratory behavior in neuronal nucleoredoxin knockout mice
title_fullStr Reduced exploratory behavior in neuronal nucleoredoxin knockout mice
title_full_unstemmed Reduced exploratory behavior in neuronal nucleoredoxin knockout mice
title_short Reduced exploratory behavior in neuronal nucleoredoxin knockout mice
title_sort reduced exploratory behavior in neuronal nucleoredoxin knockout mice
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8254043/
https://www.ncbi.nlm.nih.gov/pubmed/34198070
http://dx.doi.org/10.1016/j.redox.2021.102054
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